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Study of the cosmic star formation history based on a multi-wavelength analysis of ALMA continuum sources and an unbiased search of millimeter line emitters

山口, 裕貴 東京大学 DOI:10.15083/0002001886

2021.10.04

概要

銀河がどのように星を形成し宇宙を現在の形につくりあげてきたのかとういう問題は,現代天文学が解明すべき最重要課題の一つである.この問題の解決を目指す上で,宇宙初期から現在にわたる星形成活動の変遷とその原因を調べることは必要不可欠なステップである.本論文は,アタカマ大型ミリ波サブミリ波干渉計 (Atacama Large Millimeter/sub-millimeter Array; ALMA) を用いて,赤方偏移およそ 0.3-6に至る時代での銀河の星形成活動と星形成の原料である分子ガスの観測という二つの切り口から宇宙星形成活動史の解明に迫ることを目的としている.

近年の研究により,宇宙星形成密度の変遷が徐々に明らかになってきた.しかしながら,赤方偏移 3-4を超えるような高赤方偏移の宇宙における,ダストに覆われた星形成活動が果たす役割はまだ明らかにされていない.ダストに覆われた星形成活動は,遠赤外線からミリ波・サブミリ波と呼ばれる波長帯の光によって観測されるが,従来の単一鏡望遠鏡による観測では空間分解能の悪さに起因するコンフュージョン限界のために,高赤方偏移の宇宙におけるダストに覆われた星形成活動を完全に分解することは難しかった.そこで本研究では ALMA を用いた波長 1.2 mm 帯における無バイアスな深撮像 (ALMA twenty- Six Arcmin2 survey of GOODS-S At One-millimeter; ASAGAO) で得られた高感度・高空間分解能データ (σ~ 30-70 µJy, 角度分解能 ~ 0.5 秒) を基に ASAGAO で検出された天体 (以降 ASAGAO 天体) の性質および宇宙星形成率密度への寄与を調査した.

第 2 章では ASAGAO データの詳細および ASAGAO 天体の性質を調べるために用いた多波長データについて解説している.本研究で探査した GOODS-S は,全天の中でも最も高感度な多波長データが利用できる領域の一つであり,多波長データの解析を必要とする研究に非常に適した領域である.

第 3 章では近赤外線 K バンドで検出された銀河のカタログである ZFOURGE カタログに対応天体を持つ 66 個の ASAGAO 天体 (S/N > 3.5) に対して多波長データ解析を行った.このサンプルサイズは観測波長 1.2mm における微弱な銀河 (フラックス密度 1.0 mJy 未満) の研究としては最大のものである.本研究では,可視光からミリ波帯における測光値に対し,銀河のエネルギー放射密度分布 (Spectral Energy Distribution; SED) モデルをフィットさせることで ASAGAO 天体の ~ 90%程度が星形成銀河の主系列と呼ばれる関係を満たす一般的な星形成銀河 (赤方偏移 ~ 0-5) であることを示した.ところが同様の星形成活動を示す銀河であっても,ALMA で検出されていない銀河も多く発見された.銀河の赤外線光度と紫外線光度の比 (IRX ≡ LIR/LUV) に着目すると,ALMA で検出された天体は検出されていない天体に比べ系統的に ~ 1-2 桁程度高い IRX 値を持っていることが明らかになった.角度分解能 0.2 秒のデータを用いて空間分解した ASAGAO 天体における IRX と静止系紫外線における連続光成分のスペクトル指数 (β) との関係を調べたところ (図 1),これらの系統的な差は銀河におけるダストと星の分布の違いによってその一部が説明される可能性があることが示された.空間分解した高赤方偏移銀河の IRX-β 関係はこれまで 1 例しか研究されていなかったが,本研究では 10 天体以上のサンプルサイズでこの関係を調べることができた点が新しい.

本研究では ALMA のデータを用いることにより,K バンド対応天体をもつ ASAGAO 天体の宇宙星形成率密度への寄与を赤方偏移 0-5 に渡って赤外線光度 ~ 1011 𝐿⨀まで分解することができた (図 2). ASAGAO 天体の宇宙星形成率密度への寄与は,過去の研究によって得られた形と同様の形で進化することすなわち,赤方偏移 2-3 でピークを示し,赤方偏移 0 に向かって減少していくことが分かった.これら ASAGAO 天体は赤方偏移 2-3 で宇宙の星形成率密度の大半を担っている一方 (紫外線+赤外線で得られる星形成率密度の ~ 60%, 赤外線で得られる星形成率密度の ~ 80%) ,赤方偏移 2 よりも近傍の宇宙では ASAGAO 天体よりも赤外線光度の暗い種族が星形成の主役になっていることが示された.赤方偏移 3を超える高赤方偏移宇宙では,不定性が大きいものの,ASAGAO 天体は過去に単一鏡での掃天観測で検出された明るいサブミリ波銀河 (SMG) と同程度以上の寄与をしていることが示唆される.

ASAGAO では K バンド対応天体を持たない ALMA 連続波天体候補も複数検出された.第 4 章ではこれらのうち ALMA における S/N が 5 を超えている 5 天体 (以降は K-dropout ASAGAO 天体) についてその性質および宇宙星形成率密度への寄与を調べた.ASAGAO のような広領域かつ高感度の ALMA 観測を基に近赤外線で暗いミリ波天体 (フラックス密度 1 mJy 未満) を系統的に探査したことは本研究のユニークな点である.これら K-dropout ASAGAO 天体のうち 1 天体は Spitzer/IRAC 3.6 µm・4.5 µm に対応天体が見つかっている.また,もう 1 天体は SCUBA2 および ALMA Band 7 の観測によって 850 µm と 870 µm で対応天体が検出されている.残りの 3 天体では ASAGAO 以外では対応天体が見つからなかった. K-dropout ASAGAO 天体の可視光から電波帯の SED や電波とミリ波におけるフラックス密度比は,これら K-dropout ASAGAO 天体が赤方偏移 3-5 付近に存在する可能性を示唆している.K-dropout ASAGAO 天体の星質量や星形成率はこれらの天体が大質量銀河の形成初期段階にある可能性を示している.K-dropout ASAGAO 天体の宇宙星形成率密度への寄与を推定すると,赤方偏移 3-5 の宇宙において明るい SMG と同程度以上の寄与をしている可能性が示された (図 2).本研究により,近赤外線で暗い ALMA 天体は高赤方偏移宇宙の星形成率密度に対して無視できない寄与をしていることが判明した.これは ALMA による無バイアス観測が,従来の可視光・近赤外線深探査では分解しきれない星形成活動を検出できることを示していると考えられる.

宇宙星形成史の解明には,連続波の観測だけではなく,分光観測によるミリ波・サブミリ波輝線銀河探査も有力な手段である.例えば,一酸化炭素 (CO) 分子の回転遷移輝線は星形成の燃料である分子ガスを捉えることができる.また炭素の一階電離イオンからの禁制線 ([CII] 158 µm 線) は赤方偏移 6 を超える宇宙でのダストに覆われた星形成活動の指標となる.ところが,従来行われているミリ波・サブミリ波輝線銀河探査の多くは可視光・近赤外線で明るい銀河や SMG の追観測といったバイアスがかかったものに限られていた.宇宙星形成率密度の進化を調べるためには,無バイアスの輝線銀河探査が必要である.近年では ALMA を用いて複数の周波数設定での観測を行い,合計約 60 GHz (周波数チューニング数 8)をカバーする分光撮像データを用いた無バイアス輝線銀河探査も行われるようになってきたが,その観測領域はまだ大変狭い (約 1-4 arcmin2) 宇宙星形成率密度への寄与が大きいと考えられている一般的な星形成銀河からの輝線を調べるためには,従来よりも暗いミリ波・サブミリ波輝線銀河を検出する必要がある.

そこで第 5 章では,重力レンズ銀河団の ALMA データを用いた無バイアスミリ波輝線銀河探査の結果を報告する.解析に使用したのは 4 つの重力レンズ銀河団領域 (RXJ1347.5−1145, Abell S0592, MACS J0416.1−2403, Abell 2744) の ALMA データであり,観測領域の面積は合計 ~ 16 arcmin2,また観測周波数範囲は合計約 7.5GHz(周波数チューニング数は 1)である.これらのデータから周波数幅 60 MHz (およそ 66.7 km/s) と 100 MHz (およそ 111 km/s) の 3 次元 S/N データキューブを作成し,CLUMPFIND を用いてミリ波輝線銀河探査を行った.今回の探査では優位な (S/N > 5) 輝線天体は検出されなかったが,この探査により,CO(3-2),CO(4-3), CO(5-4), [CII] 158 µm の輝線光度関数 (それぞれ赤方偏移 ~ 0.3, ~ 0.7, ~ 1.2, ~ 6) に制限を与えた.本研究では重力レンズ銀河団による増光効果を用いることにより,これまでの観測よりも 1 桁程度以上暗い領域まで制限することに成功している [それぞれ < 10-3-10-1 /Mpc3 (𝐿′$% = 108-1010 K km/s pc2), < 10-3-10-2 /Mpc3 (L[CII] = 108-1010 𝐿⨀); 図 3・図 4] .本研究で与えられた制限は,過去の準解析的進化モデルによって予測されたミリ波輝線銀河光度関数の進化に矛盾しないことがわかった.本研究により,1 周波数チューニングの広範囲観測が輝線光度関数を制限する上で有用な手段であるとい ことが示された.

本研究では,ALMA 連続波探査によって宇宙星形成史の中における微弱なミリ波天体の役割を赤方偏移 0-5 にわたって分解し,それに加えて輝線銀河探査により宇宙星形成率密度の進化が星の原料である分子ガスの枯渇であるというモデルに矛盾しない結果が得られた.また,高赤方偏移の宇宙においてこれまでの観測では見逃されてきた星形成活動の存在が示唆することができた.まもなく ALMA を使った重力レンズ銀河団 33 領域の大型観測プログラム (ALMA Lensing Cluster Survey) が開始される予定である.そのデータに基づく微弱な (サブ) ミリ波連続波銀河およびミリ波輝線銀河の探査により,宇宙星形成率密度の進化とその原因について,より厳しい制限が与えられるようになることが期待される.

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参考文献

Alexander, D. M., Bauer, F. E., Chapman, S. C., Smail, I., Blain, A. W., Brandt, W. N., & Ivison, R. J. (2005). The X-Ray Spectral Properties of SCUBA Galaxies. ApJ, 632, 736–750.

Álvarez-Márquez, J., Burgarella, D., Heinis, S., Buat, V., Lo Faro, B., Béthermin, M., López-Fortín,C. E., Cooray, A., Farrah, D., Hurley, P., Ibar, E., Ilbert, O., Koekemoer, A. M., Lemaux, B. C., Pérez- Fournon, I., Rodighiero, G., Salvato, M., Scott, D., Taniguchi, Y., Vieira, J. D., & Wang, L. (2016). Dust properties of Lyman-break galaxies at z ~ 3. A&A, 587, A122.

Aravena, M., Decarli, R., Walter, F., Bouwens, R., Oesch, P. A., Carilli, C. L., Bauer, F. E., Da Cunha, E., Daddi, E., Gónzalez-López, J., Ivison, R. J., Riechers, D. A., Smail, I., Swinbank, A. M., Weiss, A.,

Anguita, T., Bacon, R., Bell, E., Bertoldi, F., Cortes, P., Cox, P., Hodge, J., Ibar, E., Inami, H., Infante, L., Karim, A., Magnelli, B., Ota, K., Popping, G., van der Werf, P., Wagg, J., & Fudamoto, Y. (2016a). The ALMA Spectroscopic Survey in the Hubble Ultra Deep Field: Search for [Cॲॲ] Line and Dust Emission in 6. ApJ, 833, 71.

Aravena, M., Decarli, R., Walter, F., Da Cunha, E., Bauer, F. E., Carilli, C. L., Daddi, E., Elbaz, D.,Ivison, R. J., Riechers, D. A., Smail, I., Swinbank, A. M., Weiss, A., Anguita, T., Assef, R. J., Bell,E., Bertoldi, F., Bacon, R., Bouwens, R., Cortes, P., Cox, P., Gónzalez-López, J., Hodge, J., Ibar, E., Inami, H., Infante, L., Karim, A., Le Le Fèvre, O., Magnelli, B., Ota, K., Popping, G., Sheth, K., van der Werf, P., & Wagg, J. (2016b). The ALMA Spectroscopic Survey in the Hubble Ultra Deep Field: Continuum Number Counts, Resolved 1.2 mm Extragalactic Background, and Properties of the Faintest Dusty Star-forming Galaxies. ApJ, 833, 68.

Aretxaga, I., Wilson, G. W., Aguilar, E., Alberts, S., Scott, K. S., Scoville, N., Yun, M. S., Austermann, J., Downes, T. P., Ezawa, H., Hatsukade, B., Hughes, D. H., Kawabe, R., Kohno, K., Oshima, T., Perera,T. A., Tamura, Y., & Zeballos, M. (2011). AzTEC millimetre survey of the COSMOS field - III. Source catalogue over 0.72 deg2 and plausible boosting by large-scale structure. MNRAS, 415, 3831–3850.

Ashby, M. L. N., Willner, S. P., Fazio, G. G., Dunlop, J. S., Egami, E., Faber, S. M., Ferguson, H. C.,Grogin, N. A., Hora, J. L., Huang, J.-S., Koekemoer, A. M., Labbé, I., & Wang, Z. (2015). S-CANDELS:The Spitzer-Cosmic Assembly Near-Infrared Deep Extragalactic Survey. Survey Design, Photometry, and Deep IRAC Source Counts. ApJS, 218, 33.

Baade, D., Meisenheimer, K., Iwert, O., Alonso, J., Augusteijn, T., Beletic, J., Bellemann, H., Benesch, W., Böhm, A., Böhnhardt, H., Brewer, J., Deiries, S., Delabre, B., Donaldson, R., Dupuy, C., Franke, P., Gerdes, R., Gilliotte, A., Grimm, B., Haddad, N., Hess, G., Ihle, G., Klein, R., Lenzen, R., Lizon, J.-L., Mancini, D., Münch, N., Pizarro, A., Prado, P., Rahmer, G., Reyes, J., Richardson, F., Robledo, E., Sanchez, F., Silber, A., Sinclaire, P., Wackermann, R., & Zaggia, S. (1999). The Wide Field Imager at the 2.2-m MPG/ESO telescope: first views with a 67-million-facette eye. The Messenger, 95, 15–16.

Bacon, R., Accardo, M., Adjali, L., Anwand, H., Bauer, S., Biswas, I., Blaizot, J., Boudon, D., Brau- Nogue, S., Brinchmann, J., Caillier, P., Capoani, L., Carollo, C. M., Contini, T., Couderc, P., Daguisé, E., Deiries, S., Delabre, B., Dreizler, S., Dubois, J., Dupieux, M., Dupuy, C., Emsellem, E., Fechner, T., Fleischmann, A., François, M., Gallou, G., Gharsa, T., Glindemann, A., Gojak, D., Guiderdoni, B., Hansali, G., Hahn, T., Jarno, A., Kelz, A., Koehler, C., Kosmalski, J., Laurent, F., Le Floch, M.,Lilly, S. J., Lizon, J.-L., Loupias, M., Manescau, A., Monstein, C., Nicklas, H., Olaya, J.-C., Pares, L., Pasquini, L., Pécontal-Rousset, A., Pelló, R., Petit, C., Popow, E., Reiss, R., Remillieux, A., Renault, E., Roth, M., Rupprecht, G., Serre, D., Schaye, J., Soucail, G., Steinmetz, M., Streicher, O., Stuik, R., Valentin, H., Vernet, J., Weilbacher, P., Wisotzki, L., & Yerle, N. (2010). The MUSE second-generation VLT instrument. In Ground-based and Airborne Instrumentation for Astronomy III, volume 7735 of Proc. SPIE (pp. 773508).

Barger, A. J., Cowie, L. L., Sanders, D. B., Fulton, E., Taniguchi, Y., Sato, Y., Kawara, K., & Okuda,H. (1998). Submillimetre-wavelength detection of dusty star-forming galaxies at high redshift. Nature, 394, 248–251.

Bell, E. F., Papovich, C., Wolf, C., Le Floc’h, E., Caldwell, J. A. R., Barden, M., Egami, E., McIntosh,D. H., Meisenheimer, K., Pérez-González, P. G., Rieke, G. H., Rieke, M. J., Rigby, J. R., & Rix, H.-W. (2005). Toward an Understanding of the Rapid Decline of the Cosmic Star Formation Rate. ApJ, 625, 23–36.

Béthermin, M., Daddi, E., Magdis, G., Lagos, C., Sargent, M., Albrecht, M., Aussel, H., Bertoldi, F., Buat, V., Galametz, M., Heinis, S., Ilbert, O., Karim, A., Koekemoer, A., Lacey, C., Le Floc’h, E., Navarrete, F., Pannella, M., Schreiber, C., Smolčić, V., Symeonidis, M., & Viero, M. (2015). Evolution of the dust emission of massive galaxies up to z = 4 and constraints on their dominant mode of star formation. A&A, 573, A113.

Biggs, A. D., Ivison, R. J., Ibar, E., Wardlow, J. L., Dannerbauer, H., Smail, I., Walter, F., Weiß, A., Chapman, S. C., Coppin, K. E. K., De Breuck, C., Dickinson, M., Knudsen, K. K., Mainieri, V., Menten, K., & Papovich, C. (2011). The LABOCA survey of the Extended Chandra Deep Field-South - radio and mid-infrared counterparts to submillimetre galaxies. MNRAS, 413, 2314–2338.

Borys, C., Smail, I., Chapman, S. C., Blain, A. W., Alexander, D. M., & Ivison, R. J. (2005). The Relationship between Stellar and Black Hole Mass in Submillimeter Galaxies. ApJ, 635, 853–863.

Boselli, A., Cortese, L., & Boquien, M. (2014). Cold gas properties of the Herschel Reference Survey.I. 12CO(1-0) and HI data. A&A, 564, A65.

Bouché, N., Dekel, A., Genzel, R., Genel, S., Cresci, G., Förster Schreiber, N. M., Shapiro, K. L., Davies, R. I., & Tacconi, L. (2010). The Impact of Cold Gas Accretion Above a Mass Floor on Galaxy Scaling Relations. ApJ, 718, 1001–1018.

Bouwens, R. J., Aravena, M., Decarli, R., Walter, F., da Cunha, E., Labbé, I., Bauer, F. E., Bertoldi, F., Carilli, C., Chapman, S., Daddi, E., Hodge, J., Ivison, R. J., Karim, A., Le Fevre, O., Magnelli, B., Ota, K., Riechers, D., Smail, I. R., van der Werf, P., Weiss, A., Cox, P., Elbaz, D., Gonzalez-Lopez, J., Infante, L., Oesch, P., Wagg, J., & Wilkins, S. (2016). ALMA Spectroscopic Survey in the Hubble Ultra Deep Field: The Infrared Excess of UV-Selected z = 2-10 Galaxies as a Function of UV-Continuum Slope and Stellar Mass. ApJ, 833, 72.

Bouwens, R. J., Illingworth, G. D., Franx, M., & Ford, H. (2007). UV Luminosity Functions at z~4, 5, and 6 from the Hubble Ultra Deep Field and Other Deep Hubble Space Telescope ACS Fields: Evolution and Star Formation History. ApJ, 670, 928–958.

Bouwens, R. J., Illingworth, G. D., Oesch, P. A., Trenti, M., Labbé, I., Bradley, L., Carollo, M., van Dokkum, P. G., Gonzalez, V., Holwerda, B., Franx, M., Spitler, L., Smit, R., & Magee, D. (2015). UVLuminosity Functions at Redshifts z ∼ 4 to z ∼ 10: 10,000 Galaxies from HST Legacy Fields. ApJ,803, 34.

Bouwens, R. J., Illingworth, G. D., Oesch, P. A., Trenti, M., Labbé, I., Franx, M., Stiavelli, M., Carollo,C. M., van Dokkum, P., & Magee, D. (2012). Lower-luminosity Galaxies Could Reionize the Universe: Very Steep Faint-end Slopes to the UV Luminosity Functions at z ≥ 5-8 from the HUDF09 WFC3/IR Observations. ApJL, 752, L5.

Brammer, G. B., van Dokkum, P. G., & Coppi, P. (2008). EAZY: A Fast, Public Photometric Redshift Code. ApJ, 686, 1503–1513.

Brammer, G. B., Whitaker, K. E., van Dokkum, P. G., Marchesini, D., Franx, M., Kriek, M., Labbé, I.,Lee, K.-S., Muzzin, A., Quadri, R. F., Rudnick, G., & Williams, R. (2011). The Number Density and Mass Density of Star-forming and Quiescent Galaxies at 0.4 ≤ z ≤ 2.2. ApJ, 739, 24.

Bruzual, G. & Charlot, S. (2003). Stellar population synthesis at the resolution of 2003. MNRAS, 344, 1000–1028.

Burgarella, D., Buat, V., Gruppioni, C., Cucciati, O., Heinis, S., Berta, S., Béthermin, M., Bock, J., Cooray, A., Dunlop, J. S., Farrah, D., Franceschini, A., Le Floc’h, E., Lutz, D., Magnelli, B., Nordon, R., Oliver, S. J., Page, M. J., Popesso, P., Pozzi, F., Riguccini, L., Vaccari, M., & Viero, M. (2013).Herschel PEP/HerMES: the redshift evolution (0 leq z ≤ 4) of dust attenuation and of the total (UV+IR)star formation rate density. A&A, 554, A70.

Capak, P. L., Carilli, C., Jones, G., Casey, C. M., Riechers, D., Sheth, K., Carollo, C. M., Ilbert, O., Karim, A., Lefevre, O., Lilly, S., Scoville, N., Smolcic, V., & Yan, L. (2015). Galaxies at redshifts 5 to 6 with systematically low dust content and high [Cॲॲ] emission. Nature, 522, 455–458.

Cardamone, C. N., van Dokkum, P. G., Urry, C. M., Taniguchi, Y., Gawiser, E., Brammer, G., Taylor, E., Damen, M., Treister, E., Cobb, B. E., Bond, N., Schawinski, K., Lira, P., Murayama, T., Saito, T., & Sumikawa, K. (2010). The Multiwavelength Survey by Yale-Chile (MUSYC): Deep Medium-band Optical Imaging and High-quality 32-band Photometric Redshifts in the ECDF-S. ApJS, 189, 270–285.

Carilli, C. L. & Walter, F. (2013). Cool Gas in High-Redshift Galaxies. ARA&A, 51, 105–161.

Carilli, C. L. & Yun, M. S. (1999). The Radio-to-Submillimeter Spectral Index as a Redshift Indicator.ApJL, 513, L13–L16.

Carniani, S., Maiolino, R., De Zotti, G., Negrello, M., Marconi, A., Bothwell, M. S., Capak, P., Carilli, C., Castellano, M., Cristiani, S., Ferrara, A., Fontana, A., Gallerani, S., Jones, G., Ohta, K., Ota, K., Pentericci, L., Santini, P., Sheth, K., Vallini, L., Vanzella, E., Wagg, J., & Williams, R. J. (2015). ALMA constraints on the faint millimetre source number counts and their contribution to the cosmic infrared background. A&A, 584, A78.

Casey, C. M., Chen, C.-C., Cowie, L. L., Barger, A. J., Capak, P., Ilbert, O., Koss, M., Lee, N., Le Floc’h, E., Sanders, D. B., & Williams, J. P. (2013). Characterization of SCUBA-2 450 μm and 850 μm selected galaxies in the COSMOS field. MNRAS, 436, 1919–1954.

Casey, C. M., Hodge, J., Zavala, J. A., Spilker, J., da Cunha, E., Staguhn, J., Finkelstein, S. L., & Drew,P. (2018). An Analysis of ALMA Deep Fields and the Perceived Dearth of High-z Galaxies. ApJ, 862, 78.

Casey, C. M., Hodge, J. A., Lacy, M., Hales, C. A., Barger, A., Narayanan, D., Carilli, C., Alatalo, K., da Cunha, E., Emonts, B., Ivison, R., Kimball, A., Kohno, K., Murphy, E., Riechers, D., Sargent, M., & Walter, F. (2015). Next Generation Very Large Array Memo No. 8 Science Working Group 3: Galaxy Assembly through Cosmic Time. ArXiv e-prints.

Casey, C. M., Scoville, N. Z., Sanders, D. B., Lee, N., Cooray, A., Finkelstein, S. L., Capak, P., Conley, A., De Zotti, G., Farrah, D., Fu, H., Le Floc’h, E., Ilbert, O., Ivison, R. J., & Takeuchi, T. T. (2014). Are Dusty Galaxies Blue? Insights on UV Attenuation from Dust-selected Galaxies. ApJ, 796, 95.

Chabrier, G. (2003). Galactic Stellar and Substellar Initial Mass Function. PASP, 115, 763–795.

Chapman, S. C., Blain, A. W., Smail, I., & Ivison, R. J. (2005). A Redshift Survey of the Submillimeter Galaxy Population. ApJ, 622, 772–796.

Chapman, S. C., Ivison, R. J., Roseboom, I. G., Auld, R., Bock, J., Brisbin, D., Burgarella, D., Chanial, P., Clements, D. L., Cooray, A., Eales, S., Franceschini, A., Giovannoli, E., Glenn, J., Griffin, M., Mortier, A. M. J., Oliver, S. J., Omont, A., Page, M. J., Papageorgiou, A., Pearson, C. P., Pérez-Fournon, I., Pohlen, M., Rawlings, J. I., Raymond, G., Rodighiero, G., Rowan-Robinson, M., Scott, D., Seymour, N., Smith, A. J., Symeonidis, M., Tugwell, K. E., Vaccari, M., Vieira, J. D., Vigroux, L., Wang, L., & Wright, G. (2010). Herschel-SPIRE, far-infrared properties of millimetre-bright and -faint radio galaxies. MNRAS, 409, L13–L18.

Charlot, S. & Fall, S. M. (2000). A Simple Model for the Absorption of Starlight by Dust in Galaxies.ApJ, 539, 718–731.

Chen, C.-C., Hodge, J. A., Smail, I., Swinbank, A. M., Walter, F., Simpson, J. M., Calistro Rivera, G., Bertoldi, F., Brandt, W. N., Chapman, S. C., da Cunha, E., Dannerbauer, H., De Breuck, C., Harrison,

C. M., Ivison, R. J., Karim, A., Knudsen, K. K., Wardlow, J. L., Weiß, A., & van der Werf, P. P. (2017). A Spatially Resolved Study of Cold Dust, Molecular Gas, H II Regions, and Stars in the z = 2.12 Submillimeter Galaxy ALESS67.1. ApJ, 846, 108.

Clemens, M. S., Negrello, M., De Zotti, G., Gonzalez-Nuevo, J., Bonavera, L., Cosco, G., Guarese, G., Boaretto, L., Salucci, P., Baccigalupi, C., Clements, D. L., Danese, L., Lapi, A., Mandolesi, N., Partridge, R. B., Perrotta, F., Serjeant, S., Scott, D., & Toffolatti, L. (2013). Dust and star formation properties of a complete sample of local galaxies drawn from the Planck Early Release Compact Source Catalogue. MNRAS, 433, 695–711.

Coppin, K., Chapin, E. L., Mortier, A. M. J., Scott, S. E., Borys, C., Dunlop, J. S., Halpern, M., Hughes,D. H., Pope, A., Scott, D., Serjeant, S., Wagg, J., Alexander, D. M., Almaini, O., Aretxaga, I., Babbedge, T., Best, P. N., Blain, A., Chapman, S., Clements, D. L., Crawford, M., Dunne, L., Eales, S. A., Edge,A. C., Farrah, D., Gaztañaga, E., Gear, W. K., Granato, G. L., Greve, T. R., Fox, M., Ivison, R. J., Jarvis,M. J., Jenness, T., Lacey, C., Lepage, K., Mann, R. G., Marsden, G., Martinez-Sansigre, A., Oliver, S., Page, M. J., Peacock, J. A., Pearson, C. P., Percival, W. J., Priddey, R. S., Rawlings, S., Rowan-Robinson, M., Savage, R. S., Seigar, M., Sekiguchi, K., Silva, L., Simpson, C., Smail, I., Stevens, J. A., Takagi, T., Vaccari, M., van Kampen, E., & Willott, C. J. (2006). The SCUBA Half-Degree Extragalactic Survey-II. Submillimetre maps, catalogue and number counts. MNRAS, 372, 1621–1652.

Coppin, K. E. K., Geach, J. E., Almaini, O., Arumugam, V., Dunlop, J. S., Hartley, W. G., Ivison, R. J., Simpson, C. J., Smith, D. J. B., Swinbank, A. M., Blain, A. W., Bourne, N., Bremer, M., Conselice, C., Harrison, C. M., Mortlock, A., Chapman, S. C., Davies, L. J. M., Farrah, D., Gibb, A., Jenness, T., Karim, A., Knudsen, K. K., Ibar, E., Michałowski, M. J., Peacock, J. A., Rigopoulou, D., Robson, E. I., Scott, D., Stevens, J., & van der Werf, P. P. (2015). The SCUBA-2 Cosmology Legacy Survey: the submillimetre properties of Lyman-break galaxies at z = 3-5. MNRAS, 446, 1293–1304.

Cowie, L. L., Barger, A. J., Hsu, L.-Y., Chen, C.-C., Owen, F. N., & Wang, W.-H. (2017). A Submil- limeter Perspective on the GOODS Fields (SUPER GOODS). I. An Ultradeep SCUBA-2 Survey of the GOODS-N. ApJ, 837, 139.

Cowie, L. L., González-López, J., Barger, A. J., Bauer, F. E., Hsu, L.-Y., & Wang, W.-H. (2018). A Submillimeter Perspective on the GOODS Fields (SUPER GOODS). III. A Large Sample of ALMA Sources in the GOODS-S. ApJ, 865, 106.

Cowley, M. J., Spitler, L. R., Tran, K.-V. H., Rees, G. A., Labbé, I., Allen, R. J., Brammer, G. B., Glaze- brook, K., Hopkins, A. M., Juneau, S., Kacprzak, G. G., Mullaney, J. R., Nanayakkara, T., Papovich, C., Quadri, R. F., Straatman, C. M. S., Tomczak, A. R., & van Dokkum, P. G. (2016). ZFOURGE catalogue of AGN candidates: an enhancement of 160-μm-derived star formation rates in active galaxies to z =3.2. MNRAS, 457, 629–641.

da Cunha, E., Charlot, S., & Elbaz, D. (2008). A simple model to interpret the ultraviolet, optical and infrared emission from galaxies. MNRAS, 388, 1595–1617.

da Cunha, E., Walter, F., Smail, I. R., Swinbank, A. M., Simpson, J. M., Decarli, R., Hodge, J. A., Weiss, A., van der Werf, P. P., Bertoldi, F., Chapman, S. C., Cox, P., Danielson, A. L. R., Dannerbauer, H., Greve, T. R., Ivison, R. J., Karim, A., & Thomson, A. (2015). An ALMA Survey of Sub-millimeter Galaxies in the Extended Chandra Deep Field South: Physical Properties Derived from Ultraviolet-to- radio Modeling. ApJ, 806, 110.

Daddi, E., Dannerbauer, H., Krips, M., Walter, F., Dickinson, M., Elbaz, D., & Morrison, G. E. (2009). A CO Emission Line from the Optical and Near-IR Undetected Submillimeter Galaxy GN10. ApJL, 695, L176–L180.

Dale, D. A. & Helou, G. (2002). The Infrared Spectral Energy Distribution of Normal Star-forming Galaxies: Calibration at Far-Infrared and Submillimeter Wavelengths. ApJ, 576, 159–168.

Davé, R., Finlator, K., & Oppenheimer, B. D. (2012). An analytic model for the evolution of the stellar, gas and metal content of galaxies. MNRAS, 421, 98–107.

de Barros, S., Schaerer, D., & Stark, D. P. (2014). Properties of z ~ 3-6 Lyman break galaxies. II. Impact of nebular emission at high redshift. A&A, 563, A81.

De Looze, I., Baes, M., Bendo, G. J., Cortese, L., & Fritz, J. (2011). The reliability of [Cॲॲ] as an indicator of the star formation rate. MNRAS, 416, 2712–2724.

De Looze, I., Cormier, D., Lebouteiller, V., Madden, S., Baes, M., Bendo, G. J., Boquien, M., Boselli, A., Clements, D. L., Cortese, L., Cooray, A., Galametz, M., Galliano, F., Graciá-Carpio, J., Isaak, K., Karczewski, O. Ł., Parkin, T. J., Pellegrini, E. W., Rémy-Ruyer, A., Spinoglio, L., Smith, M. W. L., & Sturm, E. (2014). The applicability of far-infrared fine-structure lines as star formation rate tracers over wide ranges of metallicities and galaxy types. A&A, 568, A62.

Decarli, R., Walter, F., Aravena, M., Carilli, C., Bouwens, R., da Cunha, E., Daddi, E., Ivison, R. J., Popping, G., Riechers, D., Smail, I. R., Swinbank, M., Weiss, A., Anguita, T., Assef, R. J., Bauer,F. E., Bell, E. F., Bertoldi, F., Chapman, S., Colina, L., Cortes, P. C., Cox, P., Dickinson, M., Elbaz,

D., Gónzalez-López, J., Ibar, E., Infante, L., Hodge, J., Karim, A., Le Fevre, O., Magnelli, B., Neri, R.,Oesch, P., Ota, K., Rix, H.-W., Sargent, M., Sheth, K., van der Wel, A., van der Werf, P., & Wagg, J. (2016). ALMA Spectroscopic Survey in the Hubble Ultra Deep Field: CO Luminosity Functions and the Evolution of the Cosmic Density of Molecular Gas. ApJ, 833, 69.

Decarli, R., Walter, F., Carilli, C., Riechers, D., Cox, P., Neri, R., Aravena, M., Bell, E., Bertoldi, F., Colombo, D., Da Cunha, E., Daddi, E., Dickinson, M., Downes, D., Ellis, R., Lentati, L., Maiolino, R.,Menten, K. M., Rix, H.-W., Sargent, M., Stark, D., Weiner, B., & Weiss, A. (2014). A Molecular Line Scan in the Hubble Deep Field North. ApJ, 782, 78.

Dickinson, M. & FIDEL Team (2007). The Far-Infrared Deep Extragalactic Legacy Survey. In American Astronomical Society Meeting Abstracts, volume 39 of Bulletin of the American Astronomical Society (pp. 822).

Dickinson, M., Giavalisco, M., & GOODS Team (2003). The Great Observatories Origins Deep Survey. In R. Bender & A. Renzini (Eds.), The Mass of Galaxies at Low and High Redshift (pp. 324).

Downes, A. J. B., Peacock, J. A., Savage, A., & Carrie, D. R. (1986). The Parkes selected regions - Powerful radio galaxies and quasars at high redshifts. MNRAS, 218, 31–62.

Dunlop, J. S., McLure, R. J., Biggs, A. D., Geach, J. E., Michałowski, M. J., Ivison, R. J., Rujopakarn, W., van Kampen, E., Kirkpatrick, A., Pope, A., Scott, D., Swinbank, A. M., Targett, T. A., Aretxaga, I., Austermann, J. E., Best, P. N., Bruce, V. A., Chapin, E. L., Charlot, S., Cirasuolo, M., Coppin, K., Ellis, R. S., Finkelstein, S. L., Hayward, C. C., Hughes, D. H., Ibar, E., Jagannathan, P., Khochfar, S., Koprowski, M. P., Narayanan, D., Nyland, K., Papovich, C., Peacock, J. A., Rieke, G. H., Robertson, B., Vernstrom, T., Werf, P. P. v. d., Wilson, G. W., & Yun, M. (2017). A deep ALMA image of the Hubble Ultra Deep Field. MNRAS, 466, 861–883.

Dunne, L., Clements, D. L., & Eales, S. A. (2000). Constraining the radio-submillimetre redshift indi- cator using data from the SCUBA Local Universe Galaxy Survey. MNRAS, 319, 813–820.

Eales, S., Lilly, S., Gear, W., Dunne, L., Bond, J. R., Hammer, F., Le Fèvre, O., & Crampton, D. (1999). The Canada-UK Deep Submillimeter Survey: First Submillimeter Images, the Source Counts, and Resolution of the Background. ApJ, 515, 518–524.

Elbaz, D., Dickinson, M., Hwang, H. S., Díaz-Santos, T., Magdis, G., Magnelli, B., Le Borgne, D., Galliano, F., Pannella, M., Chanial, P., Armus, L., Charmandaris, V., Daddi, E., Aussel, H., Popesso, P., Kartaltepe, J., Altieri, B., Valtchanov, I., Coia, D., Dannerbauer, H., Dasyra, K., Leiton, R., Mazzarella, J., Alexander, D. M., Buat, V., Burgarella, D., Chary, R.-R., Gilli, R., Ivison, R. J., Juneau, S., Le Floc’h,

E., Lutz, D., Morrison, G. E., Mullaney, J. R., Murphy, E., Pope, A., Scott, D., Brodwin, M., Calzetti, D., Cesarsky, C., Charlot, S., Dole, H., Eisenhardt, P., Ferguson, H. C., Förster Schreiber, N., Frayer, D., Giavalisco, M., Huynh, M., Koekemoer, A. M., Papovich, C., Reddy, N., Surace, C., Teplitz, H., Yun,M. S., & Wilson, G. (2011). GOODS-Herschel: an infrared main sequence for star-forming galaxies.A&A, 533, A119.

Erben, T., Schirmer, M., Dietrich, J. P., Cordes, O., Haberzettl, L., Hetterscheidt, M., Hildebrandt, H., Schmithuesen, O., Schneider, P., Simon, P., Deul, E., Hook, R. N., Kaiser, N., Radovich, M., Benoist, C., Nonino, M., Olsen, L. F., Prandoni, I., Wichmann, R., Zaggia, S., Bomans, D., Dettmar, R. J., & Miralles,J. M. (2005). GaBoDS: The Garching-Bonn Deep Survey. IV. Methods for the image reduction of multi- chip cameras demonstrated on data from the ESO Wide-Field Imager. Astronomische Nachrichten, 326, 432–464.

Faisst, A. L., Capak, P. L., Yan, L., Pavesi, R., Riechers, D. A., Barišić, I., Cooke, K. C., Kartaltepe,J. S., & Masters, D. C. (2017). Are High-redshift Galaxies Hot? Temperature of z > 5 Galaxies and Implications for Their Dust Properties. ApJ, 847, 21.

Fazio, G. G., Hora, J. L., Allen, L. E., Ashby, M. L. N., Barmby, P., Deutsch, L. K., Huang, J.-S.,Marengo, M., Megeath, S. T., Pahre, M. A., Patten, B. M., Wang, Z., Willner, S. P., Hoffmann, W. F., Moseley, S. H., Arendt, R. G., Mentzell, J. E., Trout-Marx, C., Eisenhardt, E., Stern, D., Gorjian, V., Bhattacharya, B., Carey, S., Glaccum, W. J., Lacy, M., Lowrance, P. J., Laine, S., Nelson, B. O., Reach,W. T., Stauffer, J. R., Surace, J. A., Wilson, G., Pipher, J. L., Forrest, W. J., McMurty, C. W., McCreight,C. R., McKelvey, M. E., & McMurray, R. E. (2004). In-Flight Performance of the Infrared Array Camera (IRAC) for the Spitzer Space Telescope. In American Astronomical Society Meeting Abstracts #204, volume 36 of Bulletin of the American Astronomical Society (pp. 699).

Fontana, A., Dunlop, J. S., Paris, D., Targett, T. A., Boutsia, K., Castellano, M., Galametz, A., Grazian, A., McLure, R., Merlin, E., Pentericci, L., Wuyts, S., Almaini, O., Caputi, K., Chary, R.-R., Cirasuolo, M., Conselice, C. J., Cooray, A., Daddi, E., Dickinson, M., Faber, S. M., Fazio, G., Ferguson, H. C.,Giallongo, E., Giavalisco, M., Grogin, N. A., Hathi, N., Koekemoer, A. M., Koo, D. C., Lucas, R. A., Nonino, M., Rix, H. W., Renzini, A., Rosario, D., Santini, P., Scarlata, C., Sommariva, V., Stark, D. P., van der Wel, A., Vanzella, E., Wild, V., Yan, H., & Zibetti, S. (2014). The Hawk-I UDS and GOODS Survey (HUGS): Survey design and deep K-band number counts. A&A, 570, A11.

Ford, H. C., Bartko, F., Bely, P. Y., Broadhurst, T., Burrows, C. J., Cheng, E. S., Clampin, M., Crocker,J. H., Feldman, P. D., Golimowski, D. A., Hartig, G. F., Illingworth, G., Kimble, R. A., Lesser, M. P., Miley, G., Neff, S. G., Postman, M., Sparks, W. B., Tsvetanov, Z., White, R. L., Sullivan, P., Krebs,C. A., Leviton, D. B., La Jeunesse, T., Burmester, W., Fike, S., Johnson, R., Slusher, R. B., Volmer, P., & Woodruff, R. A. (1998). Advanced camera for the Hubble Space Telescope. In P. Y. Bely & J. B. Breckinridge (Eds.), Space Telescopes and Instruments V, volume 3356 of Proc. SPIE (pp. 234–248).

Franco, M., Elbaz, D., Béthermin, M., Magnelli, B., Schreiber, C., Ciesla, L., Dickinson, M., Nagar, N., Silverman, J., Daddi, E., Alexander, D. M., Wang, T., Pannella, M., Le Floc’h, E., Pope, A., Giavalisco,M., Maury, A. J., Bournaud, F., Chary, R., Demarco, R., Ferguson, H., Finkelstein, S. L., Inami, H., Iono, D., Juneau, S., Lagache, G., Leiton, R., Lin, L., Magdis, G., Messias, H., Motohara, K., Mullaney, J., Okumura, K., Papovich, C., Pforr, J., Rujopakarn, W., Sargent, M., Shu, X., & Zhou, L. (2018). GOODS-ALMA: 1.1 mm galaxy survey. I. Source catalog and optically dark galaxies. A&A, 620, A152.

Fudamoto, Y., Oesch, P. A., Schinnerer, E., Groves, B., Karim, A., Magnelli, B., Sargent, M. T., Cassata, P., Lang, P., Liu, D., Le Fèvre, O., Leslie, S., Smolčić, V., & Tasca, L. (2017). The dust attenuationof star-forming galaxies at z ∼ 3 and beyond: New insights from ALMA observations. MNRAS, 472,483–490.

Fujimoto, S., Ouchi, M., Kohno, K., Yamaguchi, Y., Hatsukade, B., Ueda, Y., Shibuya, T., Inoue, S., Oogi, T., Toft, S., Gómez-Guijarro, C., Wang, T., Espada, D., Nagao, T., Tanaka, I., Ao, Y., Umehata,H., Taniguchi, Y., Nakanishi, K., Rujopakarn, W., Ivison, R. J., Wang, W.-h., Lee, M. M., Tadaki, K.- i., Tamura, Y., & Dunlop, J. S. (2018). ALMA 26 Arcmin2 Survey of GOODS-S at One Millimeter(ASAGAO): Average Morphology of High-z Dusty Star-forming Galaxies in an Exponential Disk (n ≃1). ApJ, 861, 7.

Fujimoto, S., Ouchi, M., Ono, Y., Shibuya, T., Ishigaki, M., Nagai, H., & Momose, R. (2016). ALMA Census of Faint 1.2 mm Sources Down to ∼ 0.02 mJy: Extragalactic Background Light and Dust-poor, High-z Galaxies. ApJS, 222, 1.

Gaia Collaboration, Brown, A. G. A., Vallenari, A., Prusti, T., de Bruijne, J. H. J., Mignard, F., Drimmel, R., Babusiaux, C., Bailer-Jones, C. A. L., Bastian, U., & et al. (2016). Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties. A&A, 595, A2.

Galliano, F., Galametz, M., & Jones, A. P. (2018). The Interstellar Dust Properties of Nearby Galaxies.ARA&A, 56, 673–713.

Geach, J. E., Chapin, E. L., Coppin, K. E. K., Dunlop, J. S., Halpern, M., Smail, I., van der Werf, P., Serjeant, S., Farrah, D., Roseboom, I., Targett, T., Arumugam, V., Asboth, V., Blain, A., Chrysostomou, A., Clarke, C., Ivison, R. J., Jones, S. L., Karim, A., Mackenzie, T., Meijerink, R., Michałowski, M. J., Scott, D., Simpson, J. M., Swinbank, A. M., Alexander, D. M., Almaini, O., Aretxaga, I., Best, P., Chapman, S., Clements, D. L., Conselice, C., Danielson, A. L. R., Eales, S., Edge, A. C., Gibb, A. G., Hughes, D., Jenness, T., Knudsen, K. K., Lacey, C. G., Marsden, G., McMahon, R., Oliver, S. J., Page,M. J., Peacock, J. A., Rigopoulou, D., Robson, E. I., Spaans, M., Stevens, J., Webb, T. M. A., Willott, C., Wilson, C. D., & Zemcov, M. (2013). The SCUBA-2 Cosmology Legacy Survey: blank-field number counts of 450-μm-selected galaxies and their contribution to the cosmic infrared background. MNRAS, 432, 53–61.

Gehrels, N. (1986). Confidence limits for small numbers of events in astrophysical data. ApJ, 303, 336–346.

Giavalisco, M., Ferguson, H. C., Koekemoer, A. M., Dickinson, M., Alexander, D. M., Bauer, F. E., Bergeron, J., Biagetti, C., Brandt, W. N., Casertano, S., Cesarsky, C., Chatzichristou, E., Conselice, C., Cristiani, S., Da Costa, L., Dahlen, T., de Mello, D., Eisenhardt, P., Erben, T., Fall, S. M., Fassnacht, C., Fosbury, R., Fruchter, A., Gardner, J. P., Grogin, N., Hook, R. N., Hornschemeier, A. E., Idzi, R., Jogee, S., Kretchmer, C., Laidler, V., Lee, K. S., Livio, M., Lucas, R., Madau, P., Mobasher, B., Moustakas,L. A., Nonino, M., Padovani, P., Papovich, C., Park, Y., Ravindranath, S., Renzini, A., Richardson, M., Riess, A., Rosati, P., Schirmer, M., Schreier, E., Somerville, R. S., Spinrad, H., Stern, D., Stiavelli, M., Strolger, L., Urry, C. M., Vandame, B., Williams, R., & Wolf, C. (2004). The Great Observatories Origins Deep Survey: Initial Results from Optical and Near-Infrared Imaging. ApJL, 600, L93–L98.

Glenn, J., Bock, J. J., Chattopadhyay, G., Edgington, S. F., Lange, A. E., Zmuidzinas, J., Mauskopf,P. D., Rownd, B., Yuen, L., & Ade, P. A. (1998). Bolocam: a millimeter-wave bolometric camera. InT. G. Phillips (Ed.), Advanced Technology MMW, Radio, and Terahertz Telescopes, volume 3357 ofProc. SPIE (pp. 326–334).

González-López, J., Bauer, F. E., Aravena, M., Laporte, N., Bradley, L., Carrasco, M., Carvajal, R., Demarco, R., Infante, L., Kneissl, R., Koekemoer, A. M., Muñoz Arancibia, A. M., Troncoso, P., Villard, E., & Zitrin, A. (2017). The ALMA Frontier Fields Survey. III. 1.1 mm emission line identifications in Abell 2744, MACSJ 0416.1-2403, MACSJ 1149.5+2223, Abell 370, and Abell S1063. A&A, 608, A138.

Goto, T., Arnouts, S., Malkan, M., Takagi, T., Inami, H., Pearson, C., Wada, T., Matsuhara, H., Ya- mauchi, C., Takeuchi, T. T., Nakagawa, T., Oyabu, S., Ishihara, D., Sanders, D. B., Le Floc’h, E., Lee,H. M., Jeong, W.-S., Serjeant, S., & Sedgwick, C. (2011). Infrared luminosity functions of AKARI Sloan Digital Sky Survey galaxies. MNRAS, 414, 1903–1913.

Greve, T. R., Ivison, R. J., Bertoldi, F., Stevens, J. A., Dunlop, J. S., Lutz, D., & Carilli, C. L. (2004). A 1200-μm MAMBO survey of ELAISN2 and the Lockman Hole - I. Maps, sources and number counts. MNRAS, 354, 779–797.

Griffin, M. J., Abergel, A., Abreu, A., Ade, P. A. R., André, P., Augueres, J.-L., Babbedge, T., Bae, Y., Baillie, T., Baluteau, J.-P., Barlow, M. J., Bendo, G., Benielli, D., Bock, J. J., Bonhomme, P., Brisbin,D., Brockley-Blatt, C., Caldwell, M., Cara, C., Castro-Rodriguez, N., Cerulli, R., Chanial, P., Chen, S., Clark, E., Clements, D. L., Clerc, L., Coker, J., Communal, D., Conversi, L., Cox, P., Crumb, D., Cunningham, C., Daly, F., Davis, G. R., de Antoni, P., Delderfield, J., Devin, N., di Giorgio, A., Did- schuns, I., Dohlen, K., Donati, M., Dowell, A., Dowell, C. D., Duband, L., Dumaye, L., Emery, R. J., Ferlet, M., Ferrand, D., Fontignie, J., Fox, M., Franceschini, A., Frerking, M., Fulton, T., Garcia, J., Gastaud, R., Gear, W. K., Glenn, J., Goizel, A., Griffin, D. K., Grundy, T., Guest, S., Guillemet, L., Hargrave, P. C., Harwit, M., Hastings, P., Hatziminaoglou, E., Herman, M., Hinde, B., Hristov, V., Huang, M., Imhof, P., Isaak, K. J., Israelsson, U., Ivison, R. J., Jennings, D., Kiernan, B., King, K. J.,Lange, A. E., Latter, W., Laurent, G., Laurent, P., Leeks, S. J., Lellouch, E., Levenson, L., Li, B., Li,J., Lilienthal, J., Lim, T., Liu, S. J., Lu, N., Madden, S., Mainetti, G., Marliani, P., McKay, D., Mercier,K., Molinari, S., Morris, H., Moseley, H., Mulder, J., Mur, M., Naylor, D. A., Nguyen, H., O’Halloran,B., Oliver, S., Olofsson, G., Olofsson, H.-G., Orfei, R., Page, M. J., Pain, I., Panuzzo, P., Papageor- giou, A., Parks, G., Parr-Burman, P., Pearce, A., Pearson, C., Pérez-Fournon, I., Pinsard, F., Pisano, G., Podosek, J., Pohlen, M., Polehampton, E. T., Pouliquen, D., Rigopoulou, D., Rizzo, D., Roseboom,I. G., Roussel, H., Rowan-Robinson, M., Rownd, B., Saraceno, P., Sauvage, M., Savage, R., Savini, G., Sawyer, E., Scharmberg, C., Schmitt, D., Schneider, N., Schulz, B., Schwartz, A., Shafer, R., Shupe,D. L., Sibthorpe, B., Sidher, S., Smith, A., Smith, A. J., Smith, D., Spencer, L., Stobie, B., Sudiwala, R., Sukhatme, K., Surace, C., Stevens, J. A., Swinyard, B. M., Trichas, M., Tourette, T., Triou, H., Tseng, S., Tucker, C., Turner, A., Vaccari, M., Valtchanov, I., Vigroux, L., Virique, E., Voellmer, G., Walker, H., Ward, R., Waskett, T., Weilert, M., Wesson, R., White, G. J., Whitehouse, N., Wilson, C. D., Win-ter, B., Woodcraft, A. L., Wright, G. S., Xu, C. K., Zavagno, A., Zemcov, M., Zhang, L., & Zonca, E. (2010). The Herschel-SPIRE instrument and its in-flight performance. A&A, 518, L3.

Grogin, N. A., Kocevski, D. D., Faber, S. M., Ferguson, H. C., Koekemoer, A. M., Riess, A. G., Acqua-viva, V., Alexander, D. M., Almaini, O., Ashby, M. L. N., Barden, M., Bell, E. F., Bournaud, F., Brown,T. M., Caputi, K. I., Casertano, S., Cassata, P., Castellano, M., Challis, P., Chary, R.-R., Cheung, E., Cirasuolo, M., Conselice, C. J., Roshan Cooray, A., Croton, D. J., Daddi, E., Dahlen, T., Davé, R., de Mello, D. F., Dekel, A., Dickinson, M., Dolch, T., Donley, J. L., Dunlop, J. S., Dutton, A. A., Elbaz, D., Fazio, G. G., Filippenko, A. V., Finkelstein, S. L., Fontana, A., Gardner, J. P., Garnavich, P. M., Gawiser, E., Giavalisco, M., Grazian, A., Guo, Y., Hathi, N. P., Häussler, B., Hopkins, P. F., Huang, J.-S., Huang, K.-H., Jha, S. W., Kartaltepe, J. S., Kirshner, R. P., Koo, D. C., Lai, K., Lee, K.-S., Li,W., Lotz, J. M., Lucas, R. A., Madau, P., McCarthy, P. J., McGrath, E. J., McIntosh, D. H., McLure,R. J., Mobasher, B., Moustakas, L. A., Mozena, M., Nandra, K., Newman, J. A., Niemi, S.-M., Noeske,K. G., Papovich, C. J., Pentericci, L., Pope, A., Primack, J. R., Rajan, A., Ravindranath, S., Reddy,N. A., Renzini, A., Rix, H.-W., Robaina, A. R., Rodney, S. A., Rosario, D. J., Rosati, P., Salimbeni, S., Scarlata, C., Siana, B., Simard, L., Smidt, J., Somerville, R. S., Spinrad, H., Straughn, A. N., Strolger, L.-G., Telford, O., Teplitz, H. I., Trump, J. R., van der Wel, A., Villforth, C., Wechsler, R. H., Weiner,B. J., Wiklind, T., Wild, V., Wilson, G., Wuyts, S., Yan, H.-J., & Yun, M. S. (2011). CANDELS: The Cosmic Assembly Near-infrared Deep Extragalactic Legacy Survey. ApJS, 197, 35.

Gruppioni, C., Pozzi, F., Rodighiero, G., Delvecchio, I., Berta, S., Pozzetti, L., Zamorani, G., Andreani, P., Cimatti, A., Ilbert, O., Le Floc’h, E., Lutz, D., Magnelli, B., Marchetti, L., Monaco, P., Nordon, R., Oliver, S., Popesso, P., Riguccini, L., Roseboom, I., Rosario, D. J., Sargent, M., Vaccari, M., Altieri, B., Aussel, H., Bongiovanni, A., Cepa, J., Daddi, E., Domínguez-Sánchez, H., Elbaz, D., Förster Schreiber, N., Genzel, R., Iribarrem, A., Magliocchetti, M., Maiolino, R., Poglitsch, A., Pérez García, A., Sanchez- Portal, M., Sturm, E., Tacconi, L., Valtchanov, I., Amblard, A., Arumugam, V., Bethermin, M., Bock, J., Boselli, A., Buat, V., Burgarella, D., Castro-Rodríguez, N., Cava, A., Chanial, P., Clements, D. L., Conley, A., Cooray, A., Dowell, C. D., Dwek, E., Eales, S., Franceschini, A., Glenn, J., Griffin, M., Hatziminaoglou, E., Ibar, E., Isaak, K., Ivison, R. J., Lagache, G., Levenson, L., Lu, N., Madden, S., Maffei, B., Mainetti, G., Nguyen, H. T., O’Halloran, B., Page, M. J., Panuzzo, P., Papageorgiou, A., Pearson, C. P., Pérez-Fournon, I., Pohlen, M., Rigopoulou, D., Rowan-Robinson, M., Schulz, B., Scott, D., Seymour, N., Shupe, D. L., Smith, A. J., Stevens, J. A., Symeonidis, M., Trichas, M., Tugwell,K. E., Vigroux, L., Wang, L., Wright, G., Xu, C. K., Zemcov, M., Bardelli, S., Carollo, M., Contini,T., Le Févre, O., Lilly, S., Mainieri, V., Renzini, A., Scodeggio, M., & Zucca, E. (2013). The Herschel PEP/HerMES luminosity function - I. Probing the evolution of PACS selected Galaxies to z ≃ 4. MNRAS, 432, 23–52.

Guilloteau, S., Delannoy, J., Downes, D., Greve, A., Guelin, M., Lucas, R., Morris, D., Radford, S. J. E., Wink, J., Cernicharo, J., Forveille, T., Garcia-Burillo, S., Neri, R., Blondel, J., Perrigourad, A., Plathner, D., & Torres, M. (1992). The IRAM interferometer on Plateau de Bure. A&A, 262, 624–633.

Hainline, L. J., Blain, A. W., Smail, I., Alexander, D. M., Armus, L., Chapman, S. C., & Ivison, R. J. (2011). The Stellar Mass Content of Submillimeter-selected Galaxies. ApJ, 740, 96.

Hancock, P. J., Murphy, T., Gaensler, B. M., Hopkins, A., & Curran, J. R. (2012). Compact continuum source finding for next generation radio surveys. MNRAS, 422, 1812–1824.

Hancock, P. J., Trott, C. M., & Hurley-Walker, N. (2018). Source Finding in the Era of the SKA (Precursors): Aegean 2.0. PASA, 35, e011.

Hatsukade, B., Kohno, K., Aretxaga, I., Austermann, J. E., Ezawa, H., Hughes, D. H., Ikarashi, S., Iono, D., Kawabe, R., Khan, S., Matsuo, H., Matsuura, S., Nakanishi, K., Oshima, T., Perera, T., Scott, K. S.,Shirahata, M., Takeuchi, T. T., Tamura, Y., Tanaka, K., Tosaki, T., Wilson, G. W., & Yun, M. S. (2011). AzTEC/ASTE 1.1-mm survey of the AKARI Deep Field South: source catalogue and number counts. MNRAS, 411, 102–116.

Hatsukade, B., Kohno, K., Umehata, H., Aretxaga, I., Caputi, K. I., Dunlop, J. S., Ikarashi, S., Iono, D., Ivison, R. J., Lee, M., Makiya, R., Matsuda, Y., Motohara, K., Nakanishi, K., Ohta, K., Tadaki,K.-i., Tamura, Y., Wang, W.-H., Wilson, G. W., Yamaguchi, Y., & Yun, M. S. (2016). SXDF-ALMA 2-arcmin2 deep survey: 1.1-mm number counts. PASJ, 68, 36.

Hatsukade, B., Kohno, K., Yamaguchi, Y., Umehata, H., Ao, Y., Aretxaga, I., Caputi, K. I., Dunlop,J. S., Egami, E., Espada, D., Fujimoto, S., Hayatsu, N. H., Hughes, D. H., Ikarashi, S., Iono, D., Ivison,R. J., Kawabe, R., Kodama, T., Lee, M., Matsuda, Y., Nakanishi, K., Ohta, K., Ouchi, M., Rujopakarn, W., Suzuki, T., Tamura, Y., Ueda, Y., Wang, T., Wang, W.-H., Wilson, G. W., Yoshimura, Y., & Yun,M. S. (2018). ALMA twenty-six arcmin2 survey of GOODS-S at one millimeter (ASAGAO): Source catalog and number counts. PASJ, 70, 105.

Hatsukade, B., Ohta, K., Seko, A., Yabe, K., & Akiyama, M. (2013). Faint End of 1.3 mm Number Counts Revealed by ALMA. ApJL, 769, L27.

Hatsukade, B., Ohta, K., Yabe, K., Seko, A., Makiya, R., & Akiyama, M. (2015). Optical-Infrared Properties of Faint 1.3 mm Sources Detected with ALMA. ApJ, 810, 91.

Hayatsu, N. H., Matsuda, Y., Umehata, H., Yoshida, N., Smail, I., Swinbank, A. M., Ivison, R., Kohno, K., Tamura, Y., Kubo, M., Iono, D., Hatsukade, B., Nakanishi, K., Kawabe, R., Nagao, T., Inoue, A. K., Takeuchi, T. T., Lee, M., Ao, Y., Fujimoto, S., Izumi, T., Yamaguchi, Y., Ikarashi, S., & Yamada, T. (2017). ALMA deep field in SSA22: Blindly detected CO emitters and [Cॲॲ] emitter candidates. PASJ, 69, 45.

Hayward, C. C., Jonsson, P., Kereš, D., Magnelli, B., Hernquist, L., & Cox, T. J. (2012). How to distin- guish starbursts and quiescently star-forming galaxies: the ’bimodal’ submillimetre galaxy population as a case study. MNRAS, 424, 951–970.

Hemmati, S., Yan, L., Diaz-Santos, T., Armus, L., Capak, P., Faisst, A., & Masters, D. (2017). The Local [Cॲॲ] 158 μm Emission Line Luminosity Function. ApJ, 834, 36.

Henriques, B., Maraston, C., Monaco, P., Fontanot, F., Menci, N., De Lucia, G., & Tonini, C. (2011). The effect of thermally pulsating asymptotic giant branch stars on the evolution of the rest-frame near- infrared galaxy luminosity function. MNRAS, 415, 3571–3579.

Hildebrandt, H., Erben, T., Dietrich, J. P., Cordes, O., Haberzettl, L., Hetterscheidt, M., Schirmer, M., Schmithuesen, O., Schneider, P., Simon, P., & Trachternach, C. (2006). GaBoDS: The Garching-Bonn Deep Survey. V. Data release of the ESO Deep-Public-Survey. A&A, 452, 1121–1128.

Hodge, J. A., Karim, A., Smail, I., Swinbank, A. M., Walter, F., Biggs, A. D., Ivison, R. J., Weiss, A., Alexander, D. M., Bertoldi, F., Brandt, W. N., Chapman, S. C., Coppin, K. E. K., Cox, P., Danielson,A. L. R., Dannerbauer, H., De Breuck, C., Decarli, R., Edge, A. C., Greve, T. R., Knudsen, K. K., Menten, K. M., Rix, H.-W., Schinnerer, E., Simpson, J. M., Wardlow, J. L., & van der Werf, P. (2013). An ALMA Survey of Submillimeter Galaxies in the Extended Chandra Deep Field South: Source Catalog and Multiplicity. ApJ, 768, 91.

Hodge, J. A., Riechers, D., Decarli, R., Walter, F., Carilli, C. L., Daddi, E., & Dannerbauer, H. (2015). The Kiloparsec-scale Star Formation Law at Redshift 4: Widespread, Highly Efficient Star Formation in the Dust-obscured Starburst Galaxy GN20. ApJL, 798, L18.

Högbom, J. A. (1974). Aperture Synthesis with a Non-Regular Distribution of Interferometer Baselines.A&AS, 15, 417.

Holland, W. S., Bintley, D., Chapin, E. L., Chrysostomou, A., Davis, G. R., Dempsey, J. T., Duncan,W. D., Fich, M., Friberg, P., Halpern, M., Irwin, K. D., Jenness, T., Kelly, B. D., MacIntosh, M. J.,Robson, E. I., Scott, D., Ade, P. A. R., Atad-Ettedgui, E., Berry, D. S., Craig, S. C., Gao, X., Gibb,A. G., Hilton, G. C., Hollister, M. I., Kycia, J. B., Lunney, D. W., McGregor, H., Montgomery, D.,Parkes, W., Tilanus, R. P. J., Ullom, J. N., Walther, C. A., Walton, A. J., Woodcraft, A. L., Amiri,M., Atkinson, D., Burger, B., Chuter, T., Coulson, I. M., Doriese, W. B., Dunare, C., Economou, F., Niemack, M. D., Parsons, H. A. L., Reintsema, C. D., Sibthorpe, B., Smail, I., Sudiwala, R., & Thomas,

H. S. (2013). SCUBA-2: the 10 000 pixel bolometer camera on the James Clerk Maxwell Telescope.MNRAS, 430, 2513–2533.

Holland, W. S., Robson, E. I., Gear, W. K., Cunningham, C. R., Lightfoot, J. F., Jenness, T., Ivison,R. J., Stevens, J. A., Ade, P. A. R., Griffin, M. J., Duncan, W. D., Murphy, J. A., & Naylor, D. A. (1999). SCUBA: a common-user submillimetre camera operating on the James Clerk Maxwell Telescope. MN- RAS, 303, 659–672.

Hsieh, B.-C., Wang, W.-H., Hsieh, C.-C., Lin, L., Yan, H., Lim, J., & Ho, P. T. P. (2012). The Taiwan ECDFS Near-Infrared Survey: Ultra-deep J and KS Imaging in the Extended Chandra Deep Field-South. ApJS, 203, 23.

Hsu, L.-Y., Stockton, A., & Shih, H.-Y. (2014). Compact Quiescent Galaxies at Intermediate Redshifts.ApJ, 796, 92.

Huang, K.-H., Bradač, M., Lemaux, B. C., Ryan, Jr., R. E., Hoag, A., Castellano, M., Amorín, R., Fontana, A., Brammer, G. B., Cain, B., Lubin, L. M., Merlin, E., Schmidt, K. B., Schrabback, T., Treu, T., Gonzalez, A. H., von der Linden, A., & Knight, R. I. (2016). Spitzer UltRa Faint SUrvey Program (SURFS UP). II. IRAC-detected Lyman-Break Galaxies at 6 ≲ z ≲ 10 behind Strong-lensing Clusters. ApJ, 817, 11.

Hughes, D. H., Serjeant, S., Dunlop, J., Rowan-Robinson, M., Blain, A., Mann, R. G., Ivison, R., Pea- cock, J., Efstathiou, A., Gear, W., Oliver, S., Lawrence, A., Longair, M., Goldschmidt, P., & Jenness, T. (1998). High-redshift star formation in the Hubble Deep Field revealed by a submillimetre-wavelength survey. Nature, 394, 241–247.

Ikarashi, S. (2014). Study of Dust-Obscured Massive Galaxies beyond Redshift 5 based on Submillimeter Photometric and Spectroscopic Surveys. PhD thesis, The University of Tokyo.

Inami, H., Bacon, R., Brinchmann, J., Richard, J., Contini, T., Conseil, S., Hamer, S., Akhlaghi, M., Bouché, N., Clément, B., Desprez, G., Drake, A. B., Hashimoto, T., Leclercq, F., Maseda, M., Michel- Dansac, L., Paalvast, M., Tresse, L., Ventou, E., Kollatschny, W., Boogaard, L. A., Finley, H., Marino,R. A., Schaye, J., & Wisotzki, L. (2017). The MUSE Hubble Ultra Deep Field Survey. II. Spectroscopic redshifts and comparisons to color selections of high-redshift galaxies. A&A, 608, A2.

Ivison, R. J., Greve, T. R., Dunlop, J. S., Peacock, J. A., Egami, E., Smail, I., Ibar, E., van Kampen, E.,Aretxaga, I., Babbedge, T., Biggs, A. D., Blain, A. W., Chapman, S. C., Clements, D. L., Coppin, K.,Farrah, D., Halpern, M., Hughes, D. H., Jarvis, M. J., Jenness, T., Jones, J. R., Mortier, A. M. J., Oliver, S., Papovich, C., Pérez-González, P. G., Pope, A., Rawlings, S., Rieke, G. H., Rowan-Robinson, M., Savage, R. S., Scott, D., Seigar, M., Serjeant, S., Simpson, C., Stevens, J. A., Vaccari, M., Wagg, J., & Willott, C. J. (2007). The SCUBA HAlf Degree Extragalactic Survey - III. Identification of radio and mid-infrared counterparts to submillimetre galaxies. MNRAS, 380, 199–228.

Ivison, R. J., Smail, I., Barger, A. J., Kneib, J.-P., Blain, A. W., Owen, F. N., Kerr, T. H., & Cowie, L. L. (2000). The diversity of SCUBA-selected galaxies. MNRAS, 315, 209–222.

Kashikawa, N., Takata, T., Ohyama, Y., Yoshida, M., Maihara, T., Iwamuro, F., Motohara, K., Totani, T., Nagashima, M., Shimasaku, K., Furusawa, H., Ouchi, M., Yagi, M., Okamura, S., Iye, M., Sasaki, T., Kosugi, G., Aoki, K., & Nakata, F. (2003). Subaru Deep Survey. III. Evolution of Rest-Frame Luminosity Functions Based on the Photometric Redshifts for a K’-Band-Selected Galaxy Sample. AJ, 125, 53–65.

Kawamata, R., Oguri, M., Ishigaki, M., Shimasaku, K., & Ouchi, M. (2016). Precise Strong Lens- ing Mass Modeling of Four Hubble Frontier Field Clusters and a Sample of Magnified High-redshift Galaxies. ApJ, 819, 114.

Keating, G. K., Marrone, D. P., Bower, G. C., Leitch, E., Carlstrom, J. E., & DeBoer, D. R. (2016). COPSS II: The Molecular Gas Content of Ten Million Cubic Megaparsecs at Redshift z ∼ 3. ApJ, 830, 34.

Kennicutt, Jr., R. C. (1998). The Global Schmidt Law in Star-forming Galaxies. ApJ, 498, 541–552.

Keres, D., Yun, M. S., & Young, J. S. (2003). CO Luminosity Functions for Far-Infrared- and B-Band- selected Galaxies and the First Estimate for ΩHI+H2. ApJ, 582, 659–667.

Kimble, R. A., MacKenty, J. W., O’Connell, R. W., & Townsend, J. A. (2008). Wide Field Camera 3: a powerful new imager for the Hubble Space Telescope. In Space Telescopes and Instrumentation 2008: Optical, Infrared, and Millimeter, volume 7010 of Proc. SPIE (pp. 70101E).

Kissler-Patig, M., Pirard, J.-F., Casali, M., Moorwood, A., Ageorges, N., Alves de Oliveira, C., Baksai, P., Bedin, L. R., Bendek, E., Biereichel, P., Delabre, B., Dorn, R., Esteves, R., Finger, G., Gojak, D.,Huster, G., Jung, Y., Kiekebush, M., Klein, B., Koch, F., Lizon, J.-L., Mehrgan, L., Petr-Gotzens, M., Pritchard, J., Selman, F., & Stegmeier, J. (2008). HAWK-I: the high-acuity wide-field K-band imager for the ESO Very Large Telescope. A&A, 491, 941–950.

Knudsen, K. K., van der Werf, P. P., & Kneib, J.-P. (2008). Probing the submillimetre number counts atf850μm < 2mJy. MNRAS, 384, 1611–1626.

Koekemoer, A. M., Faber, S. M., Ferguson, H. C., Grogin, N. A., Kocevski, D. D., Koo, D. C., Lai, K.,Lotz, J. M., Lucas, R. A., McGrath, E. J., Ogaz, S., Rajan, A., Riess, A. G., Rodney, S. A., Strolger, L., Casertano, S., Castellano, M., Dahlen, T., Dickinson, M., Dolch, T., Fontana, A., Giavalisco, M., Grazian, A., Guo, Y., Hathi, N. P., Huang, K.-H., van der Wel, A., Yan, H.-J., Acquaviva, V., Alexander,D. M., Almaini, O., Ashby, M. L. N., Barden, M., Bell, E. F., Bournaud, F., Brown, T. M., Caputi, K. I., Cassata, P., Challis, P. J., Chary, R.-R., Cheung, E., Cirasuolo, M., Conselice, C. J., Roshan Cooray, A.,Croton, D. J., Daddi, E., Davé, R., de Mello, D. F., de Ravel, L., Dekel, A., Donley, J. L., Dunlop, J. S., Dutton, A. A., Elbaz, D., Fazio, G. G., Filippenko, A. V., Finkelstein, S. L., Frazer, C., Gardner, J. P., Garnavich, P. M., Gawiser, E., Gruetzbauch, R., Hartley, W. G., Häussler, B., Herrington, J., Hopkins,P. F., Huang, J.-S., Jha, S. W., Johnson, A., Kartaltepe, J. S., Khostovan, A. A., Kirshner, R. P., Lani,C., Lee, K.-S., Li, W., Madau, P., McCarthy, P. J., McIntosh, D. H., McLure, R. J., McPartland, C., Mobasher, B., Moreira, H., Mortlock, A., Moustakas, L. A., Mozena, M., Nandra, K., Newman, J. A., Nielsen, J. L., Niemi, S., Noeske, K. G., Papovich, C. J., Pentericci, L., Pope, A., Primack, J. R., Ravin- dranath, S., Reddy, N. A., Renzini, A., Rix, H.-W., Robaina, A. R., Rosario, D. J., Rosati, P., Salimbeni, S., Scarlata, C., Siana, B., Simard, L., Smidt, J., Snyder, D., Somerville, R. S., Spinrad, H., Straughn,A. N., Telford, O., Teplitz, H. I., Trump, J. R., Vargas, C., Villforth, C., Wagner, C. R., Wandro, P., Wech-sler, R. H., Weiner, B. J., Wiklind, T., Wild, V., Wilson, G., Wuyts, S., & Yun, M. S. (2011). CANDELS: The Cosmic Assembly Near-infrared Deep Extragalactic Legacy Survey–The Hubble Space Telescope Observations, Imaging Data Products, and Mosaics. ApJS, 197, 36.

Kohno, K., Yamaguchi, Y., Tamura, Y., Tadaki, K., Hatsukade, B., Ikarashi, S., Caputi, K. I., Ru- jopakarn, W., Ivison, R. J., Dunlop, J. S., Motohara, K., Umehata, H., Yabe, K., Wang, W. H., Kodama, T., Koyama, Y., Hayashi, M., Matsuda, Y., Hughes, D., Aretxaga, I., Wilson, G. W., Yun, M. S., Ohta,K., Akiyama, M., Kawabe, R., Iono, D., Nakanishi, K., Lee, M., & Makiya, R. (2016). SXDF-UDS- CANDELS-ALMA 1.5 arcmin2 deep survey. In S. Kaviraj (Ed.), Galaxies at High Redshift and Their Evolution Over Cosmic Time, volume 319 of IAU Symposium (pp. 92–95).

Koprowski, M. P., Coppin, K. E. K., Geach, J. E., McLure, R. J., Almaini, O., Blain, A. W., Bremer,M., Bourne, N., Chapman, S. C., Conselice, C. J., Dunlop, J. S., Farrah, D., Hartley, W., Karim, A., Knudsen, K. K., Michałowski, M. J., Scott, D., Simpson, C., Smith, D. J. B., & van der Werf, P. P. (2018). A direct calibration of thtae IRX-β relation in Lyman-break Galaxies at z = 3-5. MNRAS, 479, 4355–4366.

Koprowski, M. P., Dunlop, J. S., Michałowski, M. J., Coppin, K. E. K., Geach, J. E., McLure, R. J., Scott, D., & van der Werf, P. P. (2017). The evolving far-IR galaxy luminosity function and dust-obscured star formation rate density out to z∼5. MNRAS, 471, 4155–4169.

Kreysa, E., Gemuend, H.-P., Gromke, J., Haslam, C. G., Reichertz, L., Haller, E. E., Beeman, J. W., Hansen, V., Sievers, A., & Zylka, R. (1998). Bolometer array development at the Max-Planck-Institut fuer Radioastronomie. In T. G. Phillips (Ed.), Advanced Technology MMW, Radio, and Terahertz Tele- scopes, volume 3357 of Proc. SPIE (pp. 319–325).

Kriek, M., van Dokkum, P. G., Franx, M., Illingworth, G. D., & Magee, D. K. (2009). The Hubble Sequence Beyond z = 2 for Massive Galaxies: Contrasting Large Star-forming and Compact Quiescent Galaxies. ApJL, 705, L71–L75.

Labbé, I., Oesch, P. A., Illingworth, G. D., van Dokkum, P. G., Bouwens, R. J., Franx, M., Carollo,C. M., Trenti, M., Holden, B., Smit, R., González, V., Magee, D., Stiavelli, M., & Stefanon, M. (2015). Ultradeep IRAC Imaging Over the HUDF and GOODS-South: Survey Design and Imaging Data Re- lease. ApJS, 221, 23.

Lagache, G., Cousin, M., & Chatzikos, M. (2018). The [Cॲॲ] 158 μm line emission in high-redshift galaxies. A&A, 609, A130.

Lagache, G., Dole, H., Puget, J.-L., Pérez-González, P. G., Le Floc’h, E., Rieke, G. H., Papovich, C., Egami, E., Alonso-Herrero, A., Engelbracht, C. W., Gordon, K. D., Misselt, K. A., & Morrison, J. E. (2004). Polycyclic Aromatic Hydrocarbon Contribution to the Infrared Output Energy of the Universe at z ~= 2. ApJS, 154, 112–117.

Lagos, C. d. P., Bayet, E., Baugh, C. M., Lacey, C. G., Bell, T. A., Fanidakis, N., & Geach, J. E. (2012). Predictions for the CO emission of galaxies from a coupled simulation of galaxy formation and photon- dominated regions. MNRAS, 426, 2142–2165.

Laird, E. S., Nandra, K., Pope, A., & Scott, D. (2010). On the X-ray properties of sub-mm-selected galaxies. MNRAS, 401, 2763–2772.

Laurent, G. T., Aguirre, J. E., Glenn, J., Ade, P. A. R., Bock, J. J., Edgington, S. F., Goldin, A., Golwala,S. R., Haig, D., Lange, A. E., Maloney, P. R., Mauskopf, P. D., Nguyen, H., Rossinot, P., Sayers, J., & Stover, P. (2005). The Bolocam Lockman Hole Millimeter-Wave Galaxy Survey: Galaxy Candidates and Number Counts. ApJ, 623, 742–762.

Le Fèvre, O., Saisse, M., Mancini, D., Brau-Nogue, S., Caputi, O., Castinel, L., D’Odorico, S., Garilli, B., Kissler-Patig, M., Lucuix, C., Mancini, G., Pauget, A., Sciarretta, G., Scodeggio, M., Tresse, L., & Vettolani, G. (2003). Commissioning and performances of the VLT-VIMOS instrument. In M. Iye & A. F. M. Moorwood (Eds.), Instrument Design and Performance for Optical/Infrared Ground-based Telescopes, volume 4841 of Proc. SPIE (pp. 1670–1681).

Le Fèvre, O., Vettolani, G., Garilli, B., Tresse, L., Bottini, D., Le Brun, V., Maccagni, D., Picat, J. P., Scaramella, R., Scodeggio, M., Zanichelli, A., Adami, C., Arnaboldi, M., Arnouts, S., Bardelli, S., Bolzonella, M., Cappi, A., Charlot, S., Ciliegi, P., Contini, T., Foucaud, S., Franzetti, P., Gavignaud,I., Guzzo, L., Ilbert, O., Iovino, A., McCracken, H. J., Marano, B., Marinoni, C., Mathez, G., Mazure, A., Meneux, B., Merighi, R., Paltani, S., Pellò, R., Pollo, A., Pozzetti, L., Radovich, M., Zamorani, G., Zucca, E., Bondi, M., Bongiorno, A., Busarello, G., Lamareille, F., Mellier, Y., Merluzzi, P., Ripepi, V.,& Rizzo, D. (2005). The VIMOS VLT deep survey. First epoch VVDS-deep survey: 11 564 spectra with 17.5 ≤ IAB ≤ 24, and the redshift distribution over 0 ≤ z ≤ 5. A&A, 439, 845–862.

Liu, D., Daddi, E., Dickinson, M., Owen, F., Pannella, M., Sargent, M., Béthermin, M., Magdis, G., Gao, Y., Shu, X., Wang, T., Jin, S., & Inami, H. (2018). “Super-deblended” Dust Emission in Galaxies.I. The GOODS-North Catalog and the Cosmic Star Formation Rate Density out to Redshift 6. ApJ, 853, 172.

Luo, B., Brandt, W. N., Xue, Y. Q., Lehmer, B., Alexander, D. M., Bauer, F. E., Vito, F., Yang, G.,Basu-Zych, A. R., Comastri, A., Gilli, R., Gu, Q.-S., Hornschemeier, A. E., Koekemoer, A., Liu, T., Mainieri, V., Paolillo, M., Ranalli, P., Rosati, P., Schneider, D. P., Shemmer, O., Smail, I., Sun, M., Tozzi, P., Vignali, C., & Wang, J.-X. (2017). The Chandra Deep Field-South Survey: 7 Ms Source Catalogs. ApJS, 228, 2.

Lutz, D., Poglitsch, A., Altieri, B., Andreani, P., Aussel, H., Berta, S., Bongiovanni, A., Brisbin, D., Cava, A., Cepa, J., Cimatti, A., Daddi, E., Dominguez-Sanchez, H., Elbaz, D., Förster Schreiber, N. M., Genzel, R., Grazian, A., Gruppioni, C., Harwit, M., Le Floc’h, E., Magdis, G., Magnelli, B., Maiolino, R., Nordon, R., Pérez García, A. M., Popesso, P., Pozzi, F., Riguccini, L., Rodighiero, G., Saintonge, A., Sanchez Portal, M., Santini, P., Shao, L., Sturm, E., Tacconi, L. J., Valtchanov, I., Wetzstein, M., & Wieprecht, E. (2011). PACS Evolutionary Probe (PEP) - A Herschel key program. A&A, 532, A90.

Madau, P. & Dickinson, M. (2014). Cosmic Star-Formation History. ARA&A, 52, 415–486.

Madau, P., Ferguson, H. C., Dickinson, M. E., Giavalisco, M., Steidel, C. C., & Fruchter, A. (1996). High-redshift galaxies in the Hubble Deep Field: colour selection and star formation history to z~4. MNRAS, 283, 1388–1404.

Magnelli, B., Lutz, D., Saintonge, A., Berta, S., Santini, P., Symeonidis, M., Altieri, B., Andreani, P., Aussel, H., Béthermin, M., Bock, J., Bongiovanni, A., Cepa, J., Cimatti, A., Conley, A., Daddi, E., Elbaz, D., Förster Schreiber, N. M., Genzel, R., Ivison, R. J., Le Floc’h, E., Magdis, G., Maiolino, R., Nordon, R., Oliver, S. J., Page, M., Pérez García, A., Poglitsch, A., Popesso, P., Pozzi, F., Riguccini, L., Rodighiero, G., Rosario, D., Roseboom, I., Sanchez-Portal, M., Scott, D., Sturm, E., Tacconi, L. J.,Valtchanov, I., Wang, L., & Wuyts, S. (2014). The evolution of the dust temperatures of galaxies in the SFR-M plane up to z ∼ 2. A&A, 561, A86.

Magnelli, B., Popesso, P., Berta, S., Pozzi, F., Elbaz, D., Lutz, D., Dickinson, M., Altieri, B., Andreani, P., Aussel, H., Béthermin, M., Bongiovanni, A., Cepa, J., Charmandaris, V., Chary, R.-R., Cimatti, A., Daddi, E., Förster Schreiber, N. M., Genzel, R., Gruppioni, C., Harwit, M., Hwang, H. S., Ivison,R. J., Magdis, G., Maiolino, R., Murphy, E., Nordon, R., Pannella, M., Pérez García, A., Poglitsch, A., Rosario, D., Sanchez-Portal, M., Santini, P., Scott, D., Sturm, E., Tacconi, L. J., & Valtchanov, I. (2013). The deepest Herschel-PACS far-infrared survey: number counts and infrared luminosity functions from combined PEP/GOODS-H observations. A&A, 553, A132.

Matsuda, Y., Nagao, T., Iono, D., Hatsukade, B., Kohno, K., Tamura, Y., Yamaguchi, Y., & Shimizu, I. (2015). The ALMA Patchy Deep Survey: a blind search for [Cॲॲ] emitters at z ∼ 4.5. MNRAS, 451, 1141–1145.

McMullin, J. P., Waters, B., Schiebel, D., Young, W., & Golap, K. (2007). CASA Architecture and Applications. In R. A. Shaw, F. Hill, & D. J. Bell (Eds.), Astronomical Data Analysis Software and Systems XVI, volume 376 of Astronomical Society of the Pacific Conference Series (pp. 127).

Meurer, G. R., Heckman, T. M., & Calzetti, D. (1999). Dust Absorption and the Ultraviolet Luminosity Density at z ~ 3 as Calibrated by Local Starburst Galaxies. ApJ, 521, 64–80.

Michałowski, M. J., Hayward, C. C., Dunlop, J. S., Bruce, V. A., Cirasuolo, M., Cullen, F., & Hernquist,L. (2014). Determining the stellar masses of submillimetre galaxies: the critical importance of star formation histories. A&A, 571, A75.

Michalowski, M. J., Murphy, E. J., Hjorth, J., Watson, D., Gall, C., & Dunlop, J. S. (2011). Dust Grain Growth in the Interstellar Medium of Galaxies at Redshifts 4 < z < 6.5. In W. Wang, J. Lu, Z. Luo,Z. Yang, H. Hua, & Z. Chen (Eds.), Galaxy Evolution: Infrared to Millimeter Wavelength Perspective, volume 446 of Astronomical Society of the Pacific Conference Series (pp. 387).

Miller, T. B., Chapman, S. C., Hayward, C. C., Behroozi, P. S., Bradford, C. M., Willott, C. J., & Wagg,J. (2016). Investigating overdensities around z>6 galaxies through ALMA observations of [Cॲॲ]. ArXiv e-prints.

Miyazaki, S., Komiyama, Y., Sekiguchi, M., Okamura, S., Doi, M., Furusawa, H., Hamabe, M., Imi, K., Kimura, M., Nakata, F., Okada, N., Ouchi, M., Shimasaku, K., Yagi, M., & Yasuda, N. (2002). Subaru Prime Focus Camera – Suprime-Cam. PASJ, 54, 833–853.

Moorwood, A., Cuby, J.-G., Ballester, P., Biereichel, P., Brynnel, J., Conzelmann, R., Delabre, B., Dev- illard, N., van Dijsseldonk, A., Finger, G., Gemperlein, H., Lidman, C., Herlin, T., Huster, G., Knud-strup, J., Lizon, J.-L., Mehrgan, H., Meyer, M., Nicolini, G., Silber, A., Spyromilio, J., & Stegmeier, J. (1999). ISAAC at the VLT. The Messenger, 95, 1–5.

Muchovej, S., Mroczkowski, T., Carlstrom, J. E., Cartwright, J., Greer, C., Hennessy, R., Loh, M., Pryke, C., Reddall, B., Runyan, M., Sharp, M., Hawkins, D., Lamb, J. W., Woody, D., Joy, M., Leitch, E. M., & Miller, A. D. (2007). Observations of High-Redshift X-Ray Selected Clusters with the Sunyaev- Zel’dovich Array. ApJ, 663, 708–716.

Narayanan, D., Davé, R., Johnson, B. D., Thompson, R., Conroy, C., & Geach, J. (2018). The IRX-β dust attenuation relation in cosmological galaxy formation simulations. MNRAS, 474, 1718–1736.

Nonino, M., Dickinson, M., Rosati, P., Grazian, A., Reddy, N., Cristiani, S., Giavalisco, M., Kuntschner, H., Vanzella, E., Daddi, E., Fosbury, R. A. E., & Cesarsky, C. (2009). Deep U Band and R Imaging of Goods-South: Observations, Data Reduction and First Results. ApJS, 183, 244–260.

Obreschkow, D., Croton, D., De Lucia, G., Khochfar, S., & Rawlings, S. (2009a). Simulation of the Cosmic Evolution of Atomic and Molecular Hydrogen in Galaxies. ApJ, 698, 1467–1484.

Obreschkow, D., Heywood, I., Klöckner, H.-R., & Rawlings, S. (2009b). A Heuristic Prediction of the Cosmic Evolution of the Co-luminosity Functions. ApJ, 702, 1321–1335.

Oguri, M. (2010). The Mass Distribution of SDSS J1004+4112 Revisited. PASJ, 62, 1017–1024.

Oliver, S. J., Bock, J., Altieri, B., Amblard, A., Arumugam, V., Aussel, H., Babbedge, T., Beelen, A., Béthermin, M., Blain, A., Boselli, A., Bridge, C., Brisbin, D., Buat, V., Burgarella, D., Castro- Rodríguez, N., Cava, A., Chanial, P., Cirasuolo, M., Clements, D. L., Conley, A., Conversi, L., Cooray, A., Dowell, C. D., Dubois, E. N., Dwek, E., Dye, S., Eales, S., Elbaz, D., Farrah, D., Feltre, A., Ferrero, P., Fiolet, N., Fox, M., Franceschini, A., Gear, W., Giovannoli, E., Glenn, J., Gong, Y., González Solares,E. A., Griffin, M., Halpern, M., Harwit, M., Hatziminaoglou, E., Heinis, S., Hurley, P., Hwang, H. S., Hyde, A., Ibar, E., Ilbert, O., Isaak, K., Ivison, R. J., Lagache, G., Le Floc’h, E., Levenson, L., Faro,B. L., Lu, N., Madden, S., Maffei, B., Magdis, G., Mainetti, G., Marchetti, L., Marsden, G., Marshall, J., Mortier, A. M. J., Nguyen, H. T., O’Halloran, B., Omont, A., Page, M. J., Panuzzo, P., Papageorgiou, A., Patel, H., Pearson, C. P., Pérez-Fournon, I., Pohlen, M., Rawlings, J. I., Raymond, G., Rigopoulou, D., Riguccini, L., Rizzo, D., Rodighiero, G., Roseboom, I. G., Rowan-Robinson, M., Sánchez Portal, M., Schulz, B., Scott, D., Seymour, N., Shupe, D. L., Smith, A. J., Stevens, J. A., Symeonidis, M., Trichas, M., Tugwell, K. E., Vaccari, M., Valtchanov, I., Vieira, J. D., Viero, M., Vigroux, L., Wang, L., Ward, R., Wardlow, J., Wright, G., Xu, C. K., & Zemcov, M. (2012). The Herschel Multi-tiered Extragalactic Survey: HerMES. MNRAS, 424, 1614–1635.

Ono, Y., Ouchi, M., Kurono, Y., & Momose, R. (2014). Faint Submillimeter Galaxies Revealed by Multifield Deep ALMA Observations: Number Counts, Spatial Clustering, and a Dark Submillimeter Line Emitter. ApJ, 795, 5.

Oteo, I., Zwaan, M. A., Ivison, R. J., Smail, I., & Biggs, A. D. (2016). ALMACAL I: First Dual-band Number Counts from a Deep and Wide ALMA Submillimeter Survey, Free from Cosmic Variance. ApJ, 822, 36.

Ouchi, M., Mobasher, B., Shimasaku, K., Ferguson, H. C., Fall, S. M., Ono, Y., Kashikawa, N., Mo- rokuma, T., Nakajima, K., Okamura, S., Dickinson, M., Giavalisco, M., & Ohta, K. (2009). Large Area Survey for z = 7 Galaxies in SDF and GOODS-N: Implications for Galaxy Formation and Cosmic Reionization. ApJ, 706, 1136–1151.

Persson, S. E., Murphy, D. C., Smee, S., Birk, C., Monson, A. J., Uomoto, A., Koch, E., Shectman, S., Barkhouser, R., Orndorff, J., Hammond, R., Harding, A., Scharfstein, G., Kelson, D., Marshall, J., & McCarthy, P. J. (2013). FourStar: The Near-Infrared Imager for the 6.5 m Baade Telescope at Las Campanas Observatory. PASP, 125, 654.

Poglitsch, A., Waelkens, C., Geis, N., Feuchtgruber, H., Vandenbussche, B., Rodriguez, L., Krause, O., Renotte, E., van Hoof, C., Saraceno, P., Cepa, J., Kerschbaum, F., Agnèse, P., Ali, B., Altieri, B., Andreani, P., Augueres, J.-L., Balog, Z., Barl, L., Bauer, O. H., Belbachir, N., Benedettini, M., Billot, N., Boulade, O., Bischof, H., Blommaert, J., Callut, E., Cara, C., Cerulli, R., Cesarsky, D., Contursi, A., Creten, Y., De Meester, W., Doublier, V., Doumayrou, E., Duband, L., Exter, K., Genzel, R., Gillis, J.-M., Grözinger, U., Henning, T., Herreros, J., Huygen, R., Inguscio, M., Jakob, G., Jamar, C., Jean, C., de Jong, J., Katterloher, R., Kiss, C., Klaas, U., Lemke, D., Lutz, D., Madden, S., Marquet, B., Martignac, J., Mazy, A., Merken, P., Montfort, F., Morbidelli, L., Müller, T., Nielbock, M., Okumura, K., Orfei, R., Ottensamer, R., Pezzuto, S., Popesso, P., Putzeys, J., Regibo, S., Reveret, V., Royer, P., Sauvage, M., Schreiber, J., Stegmaier, J., Schmitt, D., Schubert, J., Sturm, E., Thiel, M., Tofani, G., Vavrek, R., Wetzstein, M., Wieprecht, E., & Wiezorrek, E. (2010). The Photodetector Array Camera and Spectrometer (PACS) on the Herschel Space Observatory. A&A, 518, L2.

Popping, G., Puglisi, A., & Norman, C. A. (2017). Dissecting the IRX-β dust attenuation relation: exploring the physical origin of observed variations in galaxies. MNRAS, 472, 2315–2333.

Popping, G., van Kampen, E., Decarli, R., Spaans, M., Somerville, R. S., & Trager, S. C. (2016). Sub- mm emission line deep fields: CO and [Cॲॲ] luminosity functions out to z = 6. MNRAS, 461, 93–110.

Postman, M., Coe, D., Benítez, N., Bradley, L., Broadhurst, T., Donahue, M., Ford, H., Graur, O., Graves, G., Jouvel, S., Koekemoer, A., Lemze, D., Medezinski, E., Molino, A., Moustakas, L., Ogaz, S., Riess, A., Rodney, S., Rosati, P., Umetsu, K., Zheng, W., Zitrin, A., Bartelmann, M., Bouwens, R., Czakon, N., Golwala, S., Host, O., Infante, L., Jha, S., Jimenez-Teja, Y., Kelson, D., Lahav, O., Lazkoz, R., Maoz, D., McCully, C., Melchior, P., Meneghetti, M., Merten, J., Moustakas, J., Nonino, M., Patel, B., Regös, E., Sayers, J., Seitz, S., & Van der Wel, A. (2012). The Cluster Lensing and Supernova Survey with Hubble: An Overview. ApJS, 199, 25.

Priewe, J., Williams, L. L. R., Liesenborgs, J., Coe, D., & Rodney, S. A. (2017). Lens models under the microscope: comparison of Hubble Frontier Field cluster magnification maps. MNRAS, 465, 1030– 1045.

Puget, P., Stadler, E., Doyon, R., Gigan, P., Thibault, S., Luppino, G., Barrick, G., Benedict, T., Forveille, T., Rambold, W., Thomas, J., Vermeulen, T., Ward, J., Beuzit, J.-L., Feautrier, P., Magnard, Y., Mella, G., Preis, O., Vallee, P., Wang, S.-y., Lin, C.-J., Hall, D. N., & Hodapp, K. W. (2004). WIRCam: the infrared wide-field camera for the Canada-France-Hawaii Telescope. In A. F. M. Moorwood & M. Iye (Eds.), Ground-based Instrumentation for Astronomy, volume 5492 of Proc. SPIE (pp. 978–987).

Reddy, N. A., Erb, D. K., Pettini, M., Steidel, C. C., & Shapley, A. E. (2010). Dust Obscuration and Metallicity at High Redshift: New Inferences from UV, Hα, and 8 μm Observations of z ~ 2 Star-forming Galaxies. ApJ, 712, 1070–1091.

Rengarajan, T. N. & Takeuchi, T. T. (2001). The Radio-to-Submillimeter Flux Density Ratio of Galaxies as a Measure of Redshift. PASJ, 53, 433–437.

Retzlaff, J., Rosati, P., Dickinson, M., Vandame, B., Rité, C., Nonino, M., Cesarsky, C., & GOODS Team (2010). The Great Observatories Origins Deep Survey. VLT/ISAAC near-infrared imaging of the GOODS-South field. A&A, 511, A50.

Rieke, G. H., Young, E. T., Engelbracht, C. W., Kelly, D. M., Low, F. J., Haller, E. E., Beeman, J. W., Gordon, K. D., Stansberry, J. A., Misselt, K. A., Cadien, J., Morrison, J. E., Rivlis, G., Latter, W. B., Noriega-Crespo, A., Padgett, D. L., Stapelfeldt, K. R., Hines, D. C., Egami, E., Muzerolle, J., Alonso- Herrero, A., Blaylock, M., Dole, H., Hinz, J. L., Le Floc’h, E., Papovich, C., Pérez-González, P. G., Smith, P. S., Su, K. Y. L., Bennett, L., Frayer, D. T., Henderson, D., Lu, N., Masci, F., Pesenson, M., Rebull, L., Rho, J., Keene, J., Stolovy, S., Wachter, S., Wheaton, W., Werner, M. W., & Richards, P. L. (2004). The Multiband Imaging Photometer for Spitzer (MIPS). ApJS, 154, 25–29.

Robertson, B. E., Ellis, R. S., Dunlop, J. S., McLure, R. J., Stark, D. P., & McLeod, D. (2014). Ac- counting for Cosmic Variance in Studies of Gravitationally Lensed High-redshift Galaxies in the Hubble Frontier Field Clusters. ApJL, 796, L27.

Rowan-Robinson, M., Oliver, S., Wang, L., Farrah, D., Clements, D. L., Gruppioni, C., Marchetti, L., Rigopoulou, D., & Vaccari, M. (2016). The star formation rate density from z = 1 to 6. MNRAS, 461, 1100–1111.

Rujopakarn, W., Dunlop, J. S., Rieke, G. H., Ivison, R. J., Cibinel, A., Nyland, K., Jagannathan, P., Silverman, J. D., Alexander, D. M., Biggs, A. D., Bhatnagar, S., Ballantyne, D. R., Dickinson, M., Elbaz, D., Geach, J. E., Hayward, C. C., Kirkpatrick, A., McLure, R. J., Michałowski, M. J., Miller,N. A., Narayanan, D., Owen, F. N., Pannella, M., Papovich, C., Pope, A., Rau, U., Robertson, B. E., Scott, D., Swinbank, A. M., van der Werf, P., van Kampen, E., Weiner, B. J., & Windhorst, R. A. (2016).VLA and ALMA Imaging of Intense Galaxy-wide Star Formation in z ∼ 2 Galaxies. ApJ, 833, 12.

Safarzadeh, M., Hayward, C. C., & Ferguson, H. C. (2017). The IRX-β Relation: Insights from Simu- lations. ApJ, 840, 15.

Sargent, M. T., Daddi, E., Béthermin, M., Aussel, H., Magdis, G., Hwang, H. S., Juneau, S., Elbaz, D., & da Cunha, E. (2014). Regularity Underlying Complexity: A Redshift-independent Description of the Continuous Variation of Galaxy-scale Molecular Gas Properties in the Mass-star Formation Rate Plane. ApJ, 793, 19.

Sargsyan, L., Lebouteiller, V., Weedman, D., Spoon, H., Bernard-Salas, J., Engels, D., Stacey, G., Houck, J., Barry, D., Miles, J., & Samsonyan, A. (2012). [Cॲॲ] 158 μm Luminosities and Star Forma- tion Rate in Dusty Starbursts and Active Galactic Nuclei. ApJ, 755, 171.

Sargsyan, L., Samsonyan, A., Lebouteiller, V., Weedman, D., Barry, D., Bernard-Salas, J., Houck, J., & Spoon, H. (2014). Star Formation Rates from [Cॲॲ] 158 μm and Mid-infrared Emission Lines for Starbursts and Active Galactic Nuclei. ApJ, 790, 15.

Schreiber, C., Pannella, M., Elbaz, D., Béthermin, M., Inami, H., Dickinson, M., Magnelli, B., Wang, T., Aussel, H., Daddi, E., Juneau, S., Shu, X., Sargent, M. T., Buat, V., Faber, S. M., Ferguson, H. C., Giavalisco, M., Koekemoer, A. M., Magdis, G., Morrison, G. E., Papovich, C., Santini, P., & Scott, D. (2015). The Herschel view of the dominant mode of galaxy growth from z = 4 to the present day. A&A, 575, A74.

Scott, K. S., Austermann, J. E., Perera, T. A., Wilson, G. W., Aretxaga, I., Bock, J. J., Hughes, D. H., Kang, Y., Kim, S., Mauskopf, P. D., Sanders, D. B., Scoville, N., & Yun, M. S. (2008). AzTEC millime- tre survey of the COSMOS field - I. Data reduction and source catalogue. MNRAS, 385, 2225–2238.

Scott, K. S., Wilson, G. W., Aretxaga, I., Austermann, J. E., Chapin, E. L., Dunlop, J. S., Ezawa, H., Halpern, M., Hatsukade, B., Hughes, D. H., Kawabe, R., Kim, S., Kohno, K., Lowenthal, J. D., Montaña, A., Nakanishi, K., Oshima, T., Sanders, D., Scott, D., Scoville, N., Tamura, Y., Welch, D., Yun, M. S., & Zeballos, M. (2012). The source counts of submillimetre galaxies detected at λ= 1.1 mm. MNRAS, 423, 575–589.

Scott, K. S., Yun, M. S., Wilson, G. W., Austermann, J. E., Aguilar, E., Aretxaga, I., Ezawa, H., Ferrusca, D., Hatsukade, B., Hughes, D. H., Iono, D., Giavalisco, M., Kawabe, R., Kohno, K., Mauskopf, P. D., Oshima, T., Perera, T. A., Rand, J., Tamura, Y., Tosaki, T., Velazquez, M., Williams, C. C., & Zeballos,M. (2010). Deep 1.1mm-wavelength imaging of the GOODS-S field by AzTEC/ASTE - I. Source catalogue and number counts. MNRAS, 405, 2260–2278.

Serra, P., Doré, O., & Lagache, G. (2016). Dissecting the High-z Interstellar Medium through Intensity Mapping Cross-correlations. ApJ, 833, 153.

Silva, L., Granato, G. L., Bressan, A., & Danese, L. (1998). Modeling the Effects of Dust on Galactic Spectral Energy Distributions from the Ultraviolet to the Millimeter Band. ApJ, 509, 103–117.

Simpson, J. M., Smail, I., Swinbank, A. M., Chapman, S. C., Geach, J. E., Ivison, R. J., Thomson, A. P.,Aretxaga, I., Blain, A. W., Cowley, W. I., Chen, C.-C., Coppin, K. E. K., Dunlop, J. S., Edge, A. C., Farrah, D., Ibar, E., Karim, A., Knudsen, K. K., Meijerink, R., Michałowski, M. J., Scott, D., Spaans, M., & van der Werf, P. P. (2015). The SCUBA-2 Cosmology Legacy Survey: ALMA Resolves the Bright-end of the Sub-millimeter Number Counts. ApJ, 807, 128.

Simpson, J. M., Smail, I., Swinbank, A. M., Ivison, R. J., Dunlop, J. S., Geach, J. E., Almaini, O.,Arumugam, V., Bremer, M. N., Chen, C.-C., Conselice, C., Coppin, K. E. K., Farrah, D., Ibar, E., Hartley,W. G., Ma, C. J., Michałowski, M. J., Scott, D., Spaans, M., Thomson, A. P., & van der Werf, P. P. (2017). The SCUBA-2 Cosmology Legacy Survey: Multi-wavelength Properties of ALMA-identified Submillimeter Galaxies in UKIDSS UDS. ApJ, 839, 58.

Simpson, J. M., Swinbank, A. M., Smail, I., Alexander, D. M., Brandt, W. N., Bertoldi, F., de Breuck, C., Chapman, S. C., Coppin, K. E. K., da Cunha, E., Danielson, A. L. R., Dannerbauer, H., Greve, T. R., Hodge, J. A., Ivison, R. J., Karim, A., Knudsen, K. K., Poggianti, B. M., Schinnerer, E., Thomson, A. P.,Walter, F., Wardlow, J. L., Weiß, A., & van der Werf, P. P. (2014). An ALMA Survey of Submillime- ter Galaxies in the Extended Chandra Deep Field South: The Redshift Distribution and Evolution of Submillimeter Galaxies. ApJ, 788, 125.

Siringo, G., Kreysa, E., De Breuck, C., Kovacs, A., Lundgren, A., Schuller, F., Stanke, T., Weiss, A., Guesten, R., Jethava, N., May, T., Menten, K. M., Meyer, H.-G., Starkloff, M., & Zakosarenko, V. (2010). A New Facility Receiver on APEX: The Submillimetre APEX Bolometer Camera, SABOCA. The Messenger, 139, 20–23.

Skelton, R. E., Whitaker, K. E., Momcheva, I. G., Brammer, G. B., van Dokkum, P. G., Labbé, I., Franx, M., van der Wel, A., Bezanson, R., Da Cunha, E., Fumagalli, M., Förster Schreiber, N., Kriek, M., Leja, J., Lundgren, B. F., Magee, D., Marchesini, D., Maseda, M. V., Nelson, E. J., Oesch, P., Pacifici, C.,Patel, S. G., Price, S., Rix, H.-W., Tal, T., Wake, D. A., & Wuyts, S. (2014). 3D-HST WFC3-selected Photometric Catalogs in the Five CANDELS/3D-HST Fields: Photometry, Photometric Redshifts, and Stellar Masses. ApJS, 214, 24.

Smail, I., Ivison, R. J., & Blain, A. W. (1997). A Deep Sub-millimeter Survey of Lensing Clusters: A New Window on Galaxy Formation and Evolution. ApJL, 490, L5–L8.

Smail, I., Swinbank, A. M., Ivison, R. J., & Ibar, E. (2011). The potential influence of far-infrared emission lines on the selection of high-redshift galaxies. MNRAS, 414, L95–L99.

Solomon, P. M., Rivolo, A. R., Barrett, J., & Yahil, A. (1987). Mass, luminosity, and line width relations of Galactic molecular clouds. ApJ, 319, 730–741.

Steidel, C. C., Adelberger, K. L., Giavalisco, M., Dickinson, M., & Pettini, M. (1999). Lyman-Break Galaxies at z≥4 and the Evolution of the Ultraviolet Luminosity Density at High Redshift. ApJ, 519, 1–17.

Straatman, C. M. S., Spitler, L. R., Quadri, R. F., Labbé, I., Glazebrook, K., Persson, S. E., Papovich, C., Tran, K.-V. H., Brammer, G. B., Cowley, M., Tomczak, A., Nanayakkara, T., Alcorn, L., Allen, R., Broussard, A., van Dokkum, P., Forrest, B., van Houdt, J., Kacprzak, G. G., Kawinwanichakij, L., Kelson, D. D., Lee, J., McCarthy, P. J., Mehrtens, N., Monson, A., Murphy, D., Rees, G., Tilvi, V., & Whitaker, K. E. (2016). The FourStar Galaxy Evolution Survey (ZFOURGE): Ultraviolet to Far- infrared Catalogs, Medium-bandwidth Photometric Redshifts with Improved Accuracy, Stellar Masses, and Confirmation of Quiescet Galaxies to z ∼ 3.5. ApJ, 830, 51.

Strandet, M. L., Weiss, A., Vieira, J. D., de Breuck, C., Aguirre, J. E., Aravena, M., Ashby, M. L. N., Béthermin, M., Bradford, C. M., Carlstrom, J. E., Chapman, S. C., Crawford, T. M., Everett, W., Fass- nacht, C. D., Furstenau, R. M., Gonzalez, A. H., Greve, T. R., Gullberg, B., Hezaveh, Y., Kamenetzky,J. R., Litke, K., Ma, J., Malkan, M., Marrone, D. P., Menten, K. M., Murphy, E. J., Nadolski, A., Roter- mund, K. M., Spilker, J. S., Stark, A. A., & Welikala, N. (2016). The Redshift Distribution of Dusty Star-forming Galaxies from the SPT Survey. ApJ, 822, 80.

Swinbank, A. M., Karim, A., Smail, I., Hodge, J., Walter, F., Bertoldi, F., Biggs, A. D., de Breuck, C., Chapman, S. C., Coppin, K. E. K., Cox, P., Danielson, A. L. R., Dannerbauer, H., Ivison, R. J., Greve,T. R., Knudsen, K. K., Menten, K. M., Simpson, J. M., Schinnerer, E., Wardlow, J. L., Weiß, A., & van der Werf, P. (2012). An ALMA survey of submillimetre galaxies in the Extended Chandra Deep Field-South: detection of [Cॲॲ] at z = 4.4. MNRAS, 427, 1066–1074.

Swinbank, A. M., Simpson, J. M., Smail, I., Harrison, C. M., Hodge, J. A., Karim, A., Walter, F., Alexander, D. M., Brandt, W. N., de Breuck, C., da Cunha, E., Chapman, S. C., Coppin, K. E. K., Danielson, A. L. R., Dannerbauer, H., Decarli, R., Greve, T. R., Ivison, R. J., Knudsen, K. K., Lagos,C. D. P., Schinnerer, E., Thomson, A. P., Wardlow, J. L., Weiß, A., & van der Werf, P. (2014). An ALMA survey of sub-millimetre Galaxies in the Extended Chandra Deep Field South: the far-infrared properties of SMGs. MNRAS, 438, 1267–1287.

Tacconi, L. J., Genzel, R., Saintonge, A., Combes, F., García-Burillo, S., Neri, R., Bolatto, A., Contini, T., Förster Schreiber, N. M., Lilly, S., Lutz, D., Wuyts, S., Accurso, G., Boissier, J., Boone, F., Bouché, N., Bournaud, F., Burkert, A., Carollo, M., Cooper, M., Cox, P., Feruglio, C., Freundlich, J., Herrera- Camus, R., Juneau, S., Lippa, M., Naab, T., Renzini, A., Salome, P., Sternberg, A., Tadaki, K., Übler, H., Walter, F., Weiner, B., & Weiss, A. (2018). PHIBSS: Unified Scaling Relations of Gas Depletion Time and Molecular Gas Fractions. ApJ, 853, 179.

Tacconi, L. J., Neri, R., Genzel, R., Combes, F., Bolatto, A., Cooper, M. C., Wuyts, S., Bournaud, F., Burkert, A., Comerford, J., Cox, P., Davis, M., Förster Schreiber, N. M., García-Burillo, S., Gracia- Carpio, J., Lutz, D., Naab, T., Newman, S., Omont, A., Saintonge, A., Shapiro Griffin, K., Shapley, A., Sternberg, A., & Weiner, B. (2013). Phibss: Molecular Gas Content and Scaling Relations in z ~ 1-3 Massive, Main-sequence Star-forming Galaxies. ApJ, 768, 74.

Tadaki, K.-i., Kodama, T., Nelson, E. J., Belli, S., Förster Schreiber, N. M., Genzel, R., Hayashi, M., Herrera-Camus, R., Koyama, Y., Lang, P., Lutz, D., Shimakawa, R., Tacconi, L. J., Übler, H., Wisnioski, E., Wuyts, S., Hatsukade, B., Lippa, M., Nakanishi, K., Ikarashi, S., Kohno, K., Suzuki, T. L., Tamura, Y., & Tanaka, I. (2017). Rotating Starburst Cores in Massive Galaxies at z = 2.5. ApJL, 841, L25.

Tadaki, K.-i., Kohno, K., Kodama, T., Ikarashi, S., Aretxaga, I., Berta, S., Caputi, K. I., Dunlop, J. S.,Hatsukade, B., Hayashi, M., Hughes, D. H., Ivison, R., Izumi, T., Koyama, Y., Lutz, D., Makiya, R., Matsuda, Y., Nakanishi, K., Rujopakarn, W., Tamura, Y., Umehata, H., Wang, W.-H., Wilson, G. W., Wuyts, S., Yamaguchi, Y., & Yun, M. S. (2015). SXDF-ALMA 1.5 arcmin2 Deep Survey: A Compact Dusty Star-forming Galaxy at z = 2.5. ApJL, 811, L3.

Takeuchi, T. T., Buat, V., & Burgarella, D. (2005). The evolution of the ultraviolet and infrared lumi- nosity densities in the universe at 0 < z < 1. A&A, 440, L17–L20.

Takeuchi, T. T., Yuan, F.-T., Ikeyama, A., Murata, K. L., & Inoue, A. K. (2012). Reexamination of the Infrared Excess-Ultraviolet Slope Relation of Local Galaxies. ApJ, 755, 144.

Tamura, Y., Iono, D., Wilner, D. J., Kajisawa, M., Uchimoto, Y. K., Alexander, D. M., Chung, A., Ezawa, H., Hatsukade, B., Hayashino, T., Hughes, D. H., Ichikawa, T., Ikarashi, S., Kawabe, R., Kohno, K., Lehmer, B. D., Matsuda, Y., Nakanishi, K., Takata, T., Wilson, G. W., Yamada, T., & Yun, M. S. (2010). Submillimeter Array Identification of the Millimeter-selected Galaxy SSA22-AzTEC1: A Protoquasar in a Protocluster? ApJ, 724, 1270–1282.

Tamura, Y., Kohno, K., Nakanishi, K., Hatsukade, B., Iono, D., Wilson, G. W., Yun, M. S., Takata, T., Matsuda, Y., Tosaki, T., Ezawa, H., Perera, T. A., Scott, K. S., Austermann, J. E., Hughes, D. H., Aretx- aga, I., Chung, A., Oshima, T., Yamaguchi, N., Tanaka, K., & Kawabe, R. (2009). Spatial correlation between submillimetre and Lyman-α galaxies in the SSA22 protocluster. Nature, 459, 61–63.

Tamura, Y., Saito, T., Tsuru, T. G., Uchida, H., Iono, D., Yun, M. S., Espada, D., & Kawabe, R. (2014). Serendipitous ALMA Detection of a Distant CO-emitting X-Ray Bright Galaxy. ApJL, 781, L39.

Thompson, A. R., Moran, J. M., & Swenson Jr., G. W. (2017). Interferometry and Synthesis in Radio Astronomy third edition. Springer International Publishing.

Tody, D. (1993). IRAF in the Nineties. In R. J. Hanisch, R. J. V. Brissenden, & J. Barnes (Eds.), Astronomical Data Analysis Software and Systems II, volume 52 of Astronomical Society of the Pacific Conference Series (pp. 173).

Ueda, Y., Hatsukade, B., Kohno, K., Yamaguchi, Y., Tamura, Y., Umehata, H., Akiyama, M., Ao, Y., Aretxaga, I., Caputi, K., Dunlop, J. S., Espada, D., Fujimoto, S., Hayatsu, N. H., Imanishi, M., Inoue,A. K., Ivison, R. J., Kodama, T., Lee, M. M., Matsuoka, K., Miyaji, T., Morokuma-Matsui, K., Nagao,T., Nakanishi, K., Nyland, K., Ohta, K., Ouchi, M., Rujopakarn, W., Saito, T., Tadaki, K., Tanaka, I., Taniguchi, Y., Wang, T., Wang, W.-H., Yoshimura, Y., & Yun, M. S. (2018). ALMA 26 arcmin2 Survey of GOODS-S at One-millimeter (ASAGAO): X-Ray AGN Properties of Millimeter-selected Galaxies.ApJ, 853, 24.

Umehata, H., Hatsukade, B., Smail, I., Alexander, D. M., Ivison, R. J., Matsuda, Y., Tamura, Y., Kohno, K., Kato, Y., Hayatsu, N. H., Kubo, M., & Ikarashi, S. (2018). ALMA deep field in SSA22: Survey design and source catalog of a 20 arcmin2 survey at 1.1 mm. PASJ, 70, 65.

Umehata, H., Tamura, Y., Kohno, K., Hatsukade, B., Scott, K. S., Kubo, M., Yamada, T., Ivison, R. J., Cybulski, R., Aretxaga, I., Austermann, J., Hughes, D. H., Ezawa, H., Hayashino, T., Ikarashi, S., Iono, D., Kawabe, R., Matsuda, Y., Matsuo, H., Nakanishi, K., Oshima, T., Perera, T., Takata, T., Wilson,G. W., & Yun, M. S. (2014). AzTEC/ASTE 1.1-mm survey of SSA22: Counterpart identification and photometric redshift survey of submillimetre galaxies. MNRAS, 440, 3462–3478.

Umehata, H., Tamura, Y., Kohno, K., Ivison, R. J., Smail, I., Hatsukade, B., Nakanishi, K., Kato, Y., Ikarashi, S., Matsuda, Y., Fujimoto, S., Iono, D., Lee, M., Steidel, C. C., Saito, T., Alexander, D. M., Yun, M. S., & Kubo, M. (2017). ALMA Deep Field in SSA22: Source Catalog and Number Counts. ApJ, 835, 98.

Umetsu, K., Medezinski, E., Nonino, M., Merten, J., Postman, M., Meneghetti, M., Donahue, M., Cza- kon, N., Molino, A., Seitz, S., Gruen, D., Lemze, D., Balestra, I., Benítez, N., Biviano, A., Broadhurst, T., Ford, H., Grillo, C., Koekemoer, A., Melchior, P., Mercurio, A., Moustakas, J., Rosati, P., & Zitrin,A. (2014). CLASH: Weak-lensing Shear-and-magnification Analysis of 20 Galaxy Clusters. ApJ, 795, 163.

Vallini, L., Gruppioni, C., Pozzi, F., Vignali, C., & Zamorani, G. (2016). CO luminosity function from Herschel-selected galaxies and the contribution of AGN. MNRAS, 456, L40–L44.

Vega, O., Clemens, M. S., Bressan, A., Granato, G. L., Silva, L., & Panuzzo, P. (2008). Modelling the spectral energy distribution of ULIRGs. II. The energetic environment and the dense interstellar medium. A&A, 484, 631–653.

Walter, F., Decarli, R., Aravena, M., Carilli, C., Bouwens, R., da Cunha, E., Daddi, E., Ivison, R. J., Riechers, D., Smail, I., Swinbank, M., Weiss, A., Anguita, T., Assef, R., Bacon, R., Bauer, F., Bell,E. F., Bertoldi, F., Chapman, S., Colina, L., Cortes, P. C., Cox, P., Dickinson, M., Elbaz, D., Gónzalez- López, J., Ibar, E., Inami, H., Infante, L., Hodge, J., Karim, A., Le Fevre, O., Magnelli, B., Neri, R.,Oesch, P., Ota, K., Popping, G., Rix, H.-W., Sargent, M., Sheth, K., van der Wel, A., van der Werf, P., & Wagg, J. (2016). ALMA Spectroscopic Survey in the Hubble Ultra Deep Field: Survey Description. ApJ, 833, 67.

Walter, F., Decarli, R., Carilli, C., Bertoldi, F., Cox, P., da Cunha, E., Daddi, E., Dickinson, M., Downes, D., Elbaz, D., Ellis, R., Hodge, J., Neri, R., Riechers, D. A., Weiss, A., Bell, E., Dannerbauer, H., Krips, M., Krumholz, M., Lentati, L., Maiolino, R., Menten, K., Rix, H.-W., Robertson, B., Spinrad, H., Stark,D. P., & Stern, D. (2012). The intense starburst HDF 850.1 in a galaxy overdensity at z ≃ 5.2 in theHubble Deep Field. Nature, 486, 233–236.

Walter, F., Decarli, R., Sargent, M., Carilli, C., Dickinson, M., Riechers, D., Ellis, R., Stark, D., Weiner, B., Aravena, M., Bell, E., Bertoldi, F., Cox, P., Da Cunha, E., Daddi, E., Downes, D., Lentati, L., Maiolino, R., Menten, K. M., Neri, R., Rix, H.-W., & Weiss, A. (2014). A Molecular Line Scan in the Hubble Deep Field North: Constraints on the CO Luminosity Function and the Cosmic H2 Density. ApJ, 782, 79.

Wang, W.-H., Barger, A. J., & Cowie, L. L. (2009). Ultradeep Near-Infrared Observations of Goods 850-5. ApJ, 690, 319–329.

Wang, X., Hoag, A., Huang, K.-H., Treu, T., Bradač, M., Schmidt, K. B., Brammer, G. B., Vulcani, B.,Jones, T. A., Ryan, Jr., R. E., Amorín, R., Castellano, M., Fontana, A., Merlin, E., & Trenti, M. (2015). The Grism Lens-amplified Survey from Space (GLASS). IV. Mass Reconstruction of the Lensing Clus- ter Abell 2744 from Frontier Field Imaging and GLASS Spectroscopy. ApJ, 811, 29.

Wang T., Elbaz, D., Daddi, E., Finoguenov, A., Liu, D., Schreiber, C., Martín, S., Strazzullo, V., Valentino, F., van der Burg, R., Zanella, A., Ciesla, L., Gobat, R., Le Brun, A., Pannella, M., Sargent, M., Shu, X., Tan, Q., Cappelluti, N., & Li, Y. (2016). Discovery of a Galaxy Cluster with a Violently Starbursting Core at z = 2.506. ApJ, 828, 56.

Wang W.-H., Kohno, K., Hatsukade, B., Umehata, H., Aretxaga, I., Hughes, D., Caputi, K. I., Dunlop,J. S., Ikarashi, S., Iono, D., Ivison, R. J., Lee, M., Makiya, R., Matsuda, Y., Motohara, K., Nakanish, K., Ohta, K., Tadaki, K.-i., Tamura, Y., Kodama, T., Rujopakarn, W., Wilson, G. W., Yamaguchi, Y., Yun,M. S., Coupon, J., Hsieh, B.-C., & Foucaud, S. (2016). The SXDF-ALMA 2-arcmin2 Deep Survey: Stacking Rest-frame Near-infrared Selected Objects. ApJ, 833, 195.

Wardlow, J. L., Smail, I., Coppin, K. E. K., Alexander, D. M., Brandt, W. N., Danielson, A. L. R., Luo,B., Swinbank, A. M., Walter, F., Weiß, A., Xue, Y. Q., Zibetti, S., Bertoldi, F., Biggs, A. D., Chapman,S. C., Dannerbauer, H., Dunlop, J. S., Gawiser, E., Ivison, R. J., Knudsen, K. K., Kovács, A., Lacey,C. G., Menten, K. M., Padilla, N., Rix, H.-W., & van der Werf, P. P. (2011). The LABOCA survey of the Extended Chandra Deep Field-South: a photometric redshift survey of submillimetre galaxies. MNRAS, 415, 1479–1508.

Weingartner, J. C. & Draine, B. T. (2001). Electron-Ion Recombination on Grains and Polycyclic Aro- matic Hydrocarbons. ApJ, 563, 842–852.

Weiß, A., Kovács, A., Coppin, K., Greve, T. R., Walter, F., Smail, I., Dunlop, J. S., Knudsen, K. K., Alexander, D. M., Bertoldi, F., Brandt, W. N., Chapman, S. C., Cox, P., Dannerbauer, H., De Breuck, C., Gawiser, E., Ivison, R. J., Lutz, D., Menten, K. M., Koekemoer, A. M., Kreysa, E., Kurczynski, P., Rix, H.-W., Schinnerer, E., & van der Werf, P. P. (2009). The Large Apex Bolometer Camera Survey of the Extended Chandra Deep Field South. ApJ, 707, 1201–1216.

Weisskopf, M. C., Tananbaum, H. D., Van Speybroeck, L. P., & O’Dell, S. L. (2000). Chandra X-ray Observatory (CXO): overview. In J. E. Truemper & B. Aschenbach (Eds.), X-Ray Optics, Instruments, and Missions III, volume 4012 of Proc. SPIE (pp. 2–16).

Whitaker, K. E., Franx, M., Leja, J., van Dokkum, P. G., Henry, A., Skelton, R. E., Fumagalli, M., Momcheva, I. G., Brammer, G. B., Labbé, I., Nelson, E. J., & Rigby, J. R. (2014). Constraining the Low-mass Slope of the Star Formation Sequence at 0.5 < z < 2.5. ApJ, 795, 104.

Whitaker, K. E., Labbé, I., van Dokkum, P. G., Brammer, G., Kriek, M., Marchesini, D., Quadri, R. F., Franx, M., Muzzin, A., Williams, R. J., Bezanson, R., Illingworth, G. D., Lee, K.-S., Lundgren, B., Nelson, E. J., Rudnick, G., Tal, T., & Wake, D. A. (2011). The NEWFIRM Medium-band Survey: Photometric Catalogs, Redshifts, and the Bimodal Color Distribution of Galaxies out to z ~ 3. ApJ, 735, 86.

Williams, J. P., de Geus, E. J., & Blitz, L. (1994). Determining structure in molecular clouds. ApJ, 428, 693–712.

Wilson, G. W., Austermann, J. E., Perera, T. A., Scott, K. S., Ade, P. A. R., Bock, J. J., Glenn, J., Golwala,S. R., Kim, S., Kang, Y., Lydon, D., Mauskopf, P. D., Predmore, C. R., Roberts, C. M., Souccar, K., & Yun, M. S. (2008). The AzTEC mm-wavelength camera. MNRAS, 386, 807–818.

Windhorst, R. A., Cohen, S. H., Hathi, N. P., McCarthy, P. J., Ryan, Jr., R. E., Yan, H., Baldry, I. K.,Driver, S. P., Frogel, J. A., Hill, D. T., Kelvin, L. S., Koekemoer, A. M., Mechtley, M., O’Connell, R. W.,Robotham, A. S. G., Rutkowski, M. J., Seibert, M., Straughn, A. N., Tuffs, R. J., Balick, B., Bond, H. E.,Bushouse, H., Calzetti, D., Crockett, M., Disney, M. J., Dopita, M. A., Hall, D. N. B., Holtzman, J. A., Kaviraj, S., Kimble, R. A., MacKenty, J. W., Mutchler, M., Paresce, F., Saha, A., Silk, J. I., Trauger,J. T., Walker, A. R., Whitmore, B. C., & Young, E. T. (2011). The Hubble Space Telescope Wide Field Camera 3 Early Release Science Data: Panchromatic Faint Object Counts for 0.2-2 μm Wavelength. ApJS, 193, 27.

Wisnioski, E., Förster Schreiber, N. M., Wuyts, S., Wuyts, E., Bandara, K., Wilman, D., Genzel, R., Ben- der, R., Davies, R., Fossati, M., Lang, P., Mendel, J. T., Beifiori, A., Brammer, G., Chan, J., Fabricius, M., Fudamoto, Y., Kulkarni, S., Kurk, J., Lutz, D., Nelson, E. J., Momcheva, I., Rosario, D., Saglia, R., Seitz, S., Tacconi, L. J., & van Dokkum, P. G. (2015). The KMOS3D Survey: Design, First Results, and the Evolution of Galaxy Kinematics from 0.7 <= z <= 2.7. ApJ, 799, 209.

Wuyts, S., Labbé, I., Förster Schreiber, N. M., Franx, M., Rudnick, G., Brammer, G. B., & van Dokkum,P. G. (2008). FIREWORKS U38-to-24 μm Photometry of the GOODS Chandra Deep Field-South: Multiwavelength Catalog and Total Infrared Properties of Distant Ks-selected Galaxies. ApJ, 682, 985– 1003.

Yamaguchi, Y., Kohno, K., Tamura, Y., Oguri, M., Ezawa, H., Hayatsu, N. H., Kitayama, T., Matsuda, Y., Matsuo, H., Oshima, T., Ota, N., Izumi, T., & Umehata, H. (2017). Blind Millimeter Line Emitter Search using ALMA Data Toward Gravitational Lensing Clusters. ApJ, 845, 108.

Yamaguchi, Y., Tamura, Y., Kohno, K., Aretxaga, I., Dunlop, J. S., Hatsukade, B., Hughes, D., Ikarashi, S., Ishii, S., Ivison, R. J., Izumi, T., Kawabe, R., Kodama, T., Lee, M., Makiya, R., Matsuda, Y., Nakan-ishi, K., Ohta, K., Rujopakarn, W., Tadaki, K.-i., Umehata, H., Wang, W.-H., Wilson, G. W., Yabe, K., & Yun, M. S. (2016). SXDF-ALMA 2 arcmin2 deep survey: Resolving and characterizing the infrared extragalactic background light down to 0.5 mJy. PASJ, 68, 82.

Yuan, F.-T., Argudo-Fernández, M., Shen, S., Hao, L., Jiang, C., Yin, J., Boquien, M., & Lin, L. (2018). Spatially resolved star formation and dust attenuation in Mrk 848: Comparison of the integral field spectra and the UV-to-IR SED. A&A, 613, A13.

Yun, M. S., Aretxaga, I., Ashby, M. L. N., Austermann, J., Fazio, G. G., Giavalisco, M., Huang, J.-S.,Hughes, D. H., Kim, S., Lowenthal, J. D., Perera, T., Scott, K., Wilson, G., & Younger, J. D. (2008). Spitzer IRAC infrared colours of submillimetre-bright galaxies. MNRAS, 389, 333–340.

Yun, M. S., Scott, K. S., Guo, Y., Aretxaga, I., Giavalisco, M., Austermann, J. E., Capak, P., Chen,

Y., Ezawa, H., Hatsukade, B., Hughes, D. H., Iono, D., Johnson, S., Kawabe, R., Kohno, K., Lowen- thal, J., Miller, N., Morrison, G., Oshima, T., Perera, T. A., Salvato, M., Silverman, J., Tamura, Y., Williams, C. C., & Wilson, G. W. (2012). Deep 1.1 mm-wavelength imaging of the GOODS-S field by AzTEC/ASTE - II. Redshift distribution and nature of the submillimetre galaxy population. MNRAS, 420, 957–985.

Zavala, J. A., Aretxaga, I., Dunlop, J. S., Michałowski, M. J., Hughes, D. H., Bourne, N., Chapin, E., Cowley, W., Farrah, D., Lacey, C., Targett, T., & van der Werf, P. (2018). The SCUBA-2 Cosmology Legacy Survey: The EGS deep field - II. Morphological transformation and multiwavelength properties of faint submillimetre galaxies. MNRAS, 475, 5585–5602.

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