リケラボ論文検索は、全国の大学リポジトリにある学位論文・教授論文を一括検索できる論文検索サービスです。

リケラボ 全国の大学リポジトリにある学位論文・教授論文を一括検索するならリケラボ論文検索大学・研究所にある論文を検索できる

リケラボ 全国の大学リポジトリにある学位論文・教授論文を一括検索するならリケラボ論文検索大学・研究所にある論文を検索できる

大学・研究所にある論文を検索できる 「Long-term Evolution of a Supernova Remnant Hosting a Double Neutron Star Binary」の論文概要。リケラボ論文検索は、全国の大学リポジトリにある学位論文・教授論文を一括検索できる論文検索サービスです。

コピーが完了しました

URLをコピーしました

論文の公開元へ論文の公開元へ
書き出し

Long-term Evolution of a Supernova Remnant Hosting a Double Neutron Star Binary

Matsuoka, Tomoki Lee, Shiu-Hang Maeda, Keiichi Takiwaki, Tomoya Moriya, Takashi J. 京都大学 DOI:10.3847/1538-4357/ac67a4

2022.05.10

概要

An ultra-stripped supernova (USSN) is a type of core-collapse supernova explosion proposed to be a candidate formation site of a double neutron star (DNS) binary. We investigate the dynamical evolution of an ultra-stripped supernova remnant (USSNR), which should host a DNS at its center. By accounting for the mass-loss history of the progenitor binary using a model developed by a previous study, we construct the large-scale structure of the circumstellar medium (CSM) up to a radius ∼100 pc, and simulate the explosion and subsequent evolution of a USSN surrounded by such a CSM environment. We find that the CSM encompasses an extended region characterized by a hot plasma with a temperature ∼10⁸ K located around the termination shock of the wind from the progenitor binary (∼10 pc), and the USSNR blast wave is drastically weakened while penetrating through this hot plasma. Radio continuum emission from a young USSNR is sufficiently bright to be detectable if it inhabits our galaxy but faint compared to the observed Galactic supernova remnants (SNRs), and thereafter declines in luminosity through adiabatic cooling. Within our parameter space, USSNRs typically exhibit a low radio luminosity and surface brightness compared to the known Galactic SNRs. Due to the small event rate of USSNe and their relatively short observable life span, we calculate that USSNRs account for only ∼0.1%–1% of the total SNR population. This is consistent with the fact that no SNR hosting a DNS binary has been discovered in the Milky Way so far.

この論文で使われている画像

参考文献

Tomoki Matsuoka https://orcid.org/0000-0002-6916-3559

Shiu-Hang Lee https://orcid.org/0000-0002-2899-4241

Abbott, B. P., et al. 2017a, PhRvL, 119, 161101

Abbott, B. P., et al. 2017b, ApJL, 848, L13

16

A Self-archived copy in

Kyoto University Research Information Repository

https://repository.kulib.kyoto-u.ac.jp

The Astrophysical Journal, 930:143 (17pp), 2022 May 10

Matsuoka et al.

Martí-Vidal, I., Marcaide, J. M., Alberdi, A., et al. 2011, A&A, 526, A143

Matsuoka, T., & Maeda, K. 2020, ApJ, 898, 158

Matsuoka, T., Maeda, K., Lee, S.-H., & Yasuda, H. 2019, ApJ, 885, 41

Moffett, D. A., & Reynolds, S. P. 1994, ApJ, 437, 705

Moriya, T. J., Mazzali, P. A., Tominaga, N., et al. 2017, MNRAS, 466, 2085

Morozova, V., Piro, A. L., Renzo, M., et al. 2015, ApJ, 814, 63

Müller, B., Gay, D. W., Heger, A., Tauris, T. M., & Sim, S. A. 2018, MNRAS,

479, 3675

Orlando, S., Petruk, O., Bocchino, F., & Miceli, M. 2011, A&A, 526, A129

Ouchi, R., & Maeda, K. 2017, ApJ, 840, 90

Park, J., Caprioli, D., & Spitkovsky, A. 2015, PhRvL, 114, 085003

Patat, F., Taubenberger, S., Benetti, S., Pastorello, A., & Harutyunyan, A.

2011, A&A, 527, L6

Pavlović, M. Z., Urošević, D., Vukotić, B., Arbutina, B., & Göker, Ü. D. 2013,

ApJS, 204, 4

Podsiadlowski, P., Dewi, J. D. M., Lesaffre, P., et al. 2005, MNRAS,

361, 1243

Poveda, A., & Woltjer, L. 1968, AJ, 73, 65

Prinz, T., & Becker, W. 2012, A&A, 544, A7

Rakowski, C. E., Hughes, J. P., & Slane, P. 2001, ApJ, 548, 258

Reynolds, S. P. 1998, ApJ, 493, 375

Reynolds, S. P. 2008, ARA&A, 46, 89

Reynoso, E. M., Cichowolski, S., & Walsh, A. J. 2017, MNRAS, 464,

3029

Reynoso, E. M., & Walsh, A. J. 2015, MNRAS, 451, 3044

Roger, R. S., Milne, D. K., Caswell, J. L., & Little, A. G. 1986, MNRAS,

219, 815

Rybicki, G. B., & Lightman, A. P. 1979, Radiative processes in astrophysics

Sasaki, M., Mäkelä, M. M., Klochkov, D., Santangelo, A., & Suleimanov, V.

2018, MNRAS, 479, 3033

Sedov, L. I. 1959, Similarity and Dimensional Methods in Mechanics

Sironi, L., & Giannios, D. 2013, ApJ, 778, 107

Suwa, Y., Yoshida, T., Shibata, M., Umeda, H., & Takahashi, K. 2015,

MNRAS, 454, 3073

Suzuki, A., Moriya, T. J., & Takiwaki, T. 2019, ApJ, 887, 249

Tanaka, M., & Hotokezaka, K. 2013, ApJ, 775, 113

Tanaka, M., Utsumi, Y., Mazzali, P. A., et al. 2017, PASJ, 69, 102

Tanvir, N. R., Levan, A. J., Fruchter, A. S., et al. 2013, Natur, 500, 547

Tauris, T. M., Langer, N., Moriya, T. J., et al. 2013, ApJL, 778, L23

Tauris, T. M., Kramer, M., Freire, P. C. C., et al. 2017, ApJ, 846, 170

Tenorio-Tagle, G., Bodenheimer, P., Franco, J., & Rozyczka, M. 1990,

MNRAS, 244, 563

Tenorio-Tagle, G., Rozyczka, M., Franco, J., & Bodenheimer, P. 1991,

MNRAS, 251, 318

Truelove, J. K., & McKee, C. F. 1999, ApJS, 120, 299

Uchida, H., Koyama, K., Yamaguchi, H., et al. 2012, PASJ, 64, 141

Vigna-Gómez, A., Wassink, M., Klencki, J., et al. 2021, arXiv:2107.14526

Vink, J., Bleeker, J., van der Heyden, K., et al. 2006, ApJL, 648, L33

Weaver, R., McCray, R., Castor, J., Shapiro, P., & Moore, R. 1977, ApJ,

218, 377

Whiteoak, J. B. Z., & Green, A. J. 1996, A&AS, 118, 329

Yao, Y., De, K., Kasliwal, M. M., et al. 2020, ApJ, 900, 46

Yasuda, H., & Lee, S.-H. 2019, ApJ, 876, 27

Yasuda, H., Lee, S.-H., & Maeda, K. 2021a, arXiv:2109.04032

Yasuda, H., Lee, S.-H., & Maeda, K. 2021b, arXiv:2111.09534

Yoon, S. C., Woosley, S. E., & Langer, N. 2010, ApJ, 725, 940

Yoshida, T., Suwa, Y., Umeda, H., Shibata, M., & Takahashi, K. 2017,

MNRAS, 471, 4275

Zhu, H., Tian, W. W., & Zuo, P. 2014, ApJ, 793, 95

Zirakashvili, V. N., & Ptuskin, V. S. 2008, in AIP Conf. Ser. 1085, ed.

F. A. Aharonian, W. Hofmann, & F. Rieger (Melville, NY: AIP), 336

Ackermann, M., Ajello, M., Allafort, A., et al. 2013, Sci, 339, 807

Allen, G. E., Chow, K., DeLaney, T., et al. 2015, ApJ, 798, 82

Ambrocio-Cruz, P., Rosado, M., de la Fuente, E., Silva, R., &

Blanco-Piñon, A. 2017, MNRAS, 472, 51

Bellm, E. C., Kulkarni, S. R., Graham, M. J., et al. 2019, PASP, 131, 018002

Berkhuijsen, E. M., & Fletcher, A. 2008, MNRAS, 390, L19

Book, D. L. 1994, ShWav, 4, 1

Botteon, A., Brunetti, G., Ryu, D., & Roh, S. 2020, A&A, 634, A64

Braun, R., Bonaldi, A., Bourke, T., Keane, E., & Wagg, J. 2019, arXiv:1912.

12699

Burgay, M., D’Amico, N., Possenti, A., et al. 2003, Natur, 426, 531

Caprioli, D., Pop, A.-R., & Spitkovsky, A. 2015, ApJL, 798, L28

Caprioli, D., & Spitkovsky, A. 2014, ApJ, 783, 91

Chandra, P., Chevalier, R. A., Chugai, N., et al. 2012, ApJ, 755, 110

Chandra, P., Stockdale, C. J., Chevalier, R. A., et al. 2009, ApJ, 690, 1839

Chevalier, R. A., & Fransson, C. 1994, ApJ, 420, 268

Chevalier, R. A., & Fransson, C. 2006, ApJ, 651, 381

Chevalier, R. A., Fransson, C., & Nymark, T. K. 2006, ApJ, 641, 1029

Cioffi, D. F., McKee, C. F., & Bertschinger, E. 1988, ApJ, 334, 252

De, K., Kasliwal, M. M., Ofek, E. O., et al. 2018, Sci, 362, 201

DeLaney, T., & Rudnick, L. 2003, ApJ, 589, 818

Draine, B. T. 2011, Physics of the Interstellar and Intergalactic Medium, doi:

10.1515/9781400839087

Drout, M. R., Soderberg, A. M., Mazzali, P. A., et al. 2013, ApJ, 774, 58

Drury, L. O. 1983, RPPh, 46, 973

Dubner, G., & Giacani, E. 2015, A&ARv, 23, 3

Dwarkadas, V. V. 2005, ApJ, 630, 892

Dwarkadas, V. V. 2007, ApJ, 667, 226

Eldridge, J. J., Fraser, M., Smartt, S. J., Maund, J. R., & Crockett, R. M. 2013,

MNRAS, 436, 774

Ellison, D. C., Slane, P., & Gaensler, B. M. 2001, ApJ, 563, 191

Fang, Q., Maeda, K., Kuncarayakti, H., Sun, F., & Gal-Yam, A. 2019, NatAs,

3, 434

Fermi, E. 1949, PhRv, 75, 1169

Ferrand, G., Decourchelle, A., & Safi-Harb, S. 2014, ApJ, 789, 49

Fransson, C., & Björnsson, C.-I. 1998, ApJ, 509, 861

Fukui, Y., Moriguchi, Y., Tamura, K., et al. 2003, PASJ, 55, L61

Gaensler, B. M., Green, A. J., & Manchester, R. N. 1998, MNRAS, 299, 812

Gaensler, B. M., & Wallace, B. J. 2003, ApJ, 594, 326

Gök, F., & Sezer, A. 2012, MNRAS, 419, 1603

Graham, M. J., Kulkarni, S. R., Bellm, E. C., et al. 2019, PASP, 131, 078001

Green, D. A. 2017, yCat, VII/278

Green, D. A. 2019, JApA, 40, 36

Ha, J.-H., Ryu, D., Kang, H., & van Marle, A. J. 2018, ApJ, 864, 105

Harten, A., & Hyman, J. M. 1983, JCoPh, 50, 235

Hijikawa, K., Kinugawa, T., Yoshida, T., & Umeda, H. 2019, ApJ, 882, 93

Hotokezaka, K., Kyutoku, K., Tanaka, M., et al. 2013, ApJL, 778, L16

Hui, C. Y., & Becker, W. 2009, A&A, 494, 1005

Iaconi, R., Maeda, K., De Marco, O., Nozawa, T., & Reichardt, T. 2019,

MNRAS, 489, 3334

Ivanova, N., Justham, S., Chen, X., et al. 2013, A&ARv, 21, 59

Katsuda, S., Maeda, K., Bamba, A., et al. 2016, ApJ, 832, 194

Kumar, B., Eswaraiah, C., Singh, A., et al. 2019, MNRAS, 488, 3089

Kurfürst, P., & Krtička, J. 2019, A&A, 625, A24

Lacy, M., Baum, S. A., Chandler, C. J., et al. 2020, PASP, 132, 035001

Lau, M. Y. M., Hirai, R., González-Bolívar, M., et al. 2021, arXiv:2111.00923

Law-Smith, J. A. P., Everson, R. W., Ramirez-Ruiz, E., et al. 2020,

arXiv:2011.06630

Lee, S.-H., Ellison, D. C., & Nagataki, S. 2012, ApJ, 750, 156

Lovchinsky, I., Slane, P., Gaensler, B. M., et al. 2011, ApJ, 731, 70

Maeda, K. 2012, ApJ, 758, 81

17

...

参考文献をもっと見る

全国の大学の
卒論・修論・学位論文

一発検索!

この論文の関連論文を見る