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 「Quantum phase transition and resurgence: Lessons from three-dimensional $mathcal{N}=4$ supersymmetric quantum electrodynamics」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

Quantum phase transition and resurgence: Lessons from three-dimensional $mathcal{N}=4$ supersymmetric quantum electrodynamics

Fujimori, Toshiaki Honda, Masazumi Kamata, Syo Misumi, Tatsuhiro Sakai, Norisuke Yoda, Takuya 京都大学 DOI:10.1093/ptep/ptab086

2021.10

概要

We study a resurgence structure of a quantum field theory with a phase transition to uncover relations between resurgence and phase transitions. In particular, we focus on three-dimensional N=4 supersymmetric quantum electrodynamics (SQED) with multiple hypermultiplets, where a second-order quantum phase transition has recently been proposed in the large-flavor limit. We provide interpretations of the phase transition from the viewpoints of Lefschetz thimbles and resurgence. For this purpose, we study the Lefschetz thimble structure and properties of the large-flavor expansion for the partition function obtained by the supersymmetric localization. We show that the second-order phase transition is understood as a phenomenon where a Stokes and an anti-Stokes phenomenon occur simultaneously. The order of the phase transition is determined by how saddles collide at the critical point. In addition, the phase transition accompanies an infinite number of Stokes phenomena due to the supersymmetry. These features are appropriately mapped to the Borel plane structures as the resurgence theory expects. Given the lessons from SQED, we provide a more general discussion on the relationship between the resurgence and phase transitions. In particular, we show how the information on the phase transition is decoded from the Borel resummation technique.

この論文で使われている画像

参考文献

1. J. Ecalle, Les Fonctions Resurgentes (Université de Paris-Sud, Paris, 1981) Vols. I–III.

2. O. Costin, Asymptotics and Borel Summability (CRC Press, Hoboken, NJ, 2008).

3. M. Mariño, Fortsch. Phys. 62, 455 (2014) [arXiv:1206.6272 [hep-th]] [Search INSPIRE].

4. D. Dorigoni, Ann. Phys. 409, 167914 (2019) [arXiv:1411.3585 [hep-th]] [Search INSPIRE].

5. I. Aniceto, G. Bas¸ar, and R. Schiappa, Phys. Rept. 809, 1 (2019) [arXiv:1802.10441 [hep-th]] [Search INSPIRE].

6. D. Sauzin, arXiv:1405.0356 [math.DS].

7. C. M. Bender and T. T. Wu, Phys. Rev. 184, 1231 (1969).

8. C. M. Bender and T. T. Wu, Phys. Rev. D 7, 1620 (1973).

9. R. Balian, G. Parisi, and A. Voros, Quartic Oscillator, in Feynman Path Integrals, eds. S. Albeverio, Ph. Combe, R. Høegh-Krohn, G. Rideau, M. Sirugue-Collin, M. Sirugue, and R. Stora (Springer, New York, 1979), p. 337.

10. A. Voros, Ann. Inst. Henri Poincaré Phys. Théor. 39, 211 (1983).

11. J. Zinn-Justin and U. D. Jentschura, Ann. Phys. 313, 197 (2004) [arXiv:quant-ph/0501136] [Search INSPIRE].

12. J. Zinn-Justin and U. D. Jentschura, Ann. Phys. 313, 269 (2004) [arXiv:quant-ph/0501137] [Search INSPIRE].

13. U. D. Jentschura, A. Surzhykov, and J. Zinn-Justin, Ann. Phys. 325, 1135 (2010) [arXiv:1001.3910 [math-ph]] [Search INSPIRE].

14. U. D. Jentschura and J. Zinn-Justin, Ann. Phys. 326, 2186 (2011).

15. G. V. Dunne and M. Ünsal, Phys. Rev. D 89, 041701(R) (2014) [arXiv:1306.4405 [hep-th]] [Search INSPIRE].

16. G. Basar, G. V. Dunne, and M. Ünsal, J. High Energy Phys. 1310, 041 (2013) [arXiv:1308.1108 [hep-th]] [Search INSPIRE].

17. G. V. Dunne and M. Ünsal, Phys. Rev. D 89, 105009(R) (2014) [arXiv:1401.5202 [hep-th]] [Search INSPIRE].

18. M. A. Escobar-Ruiz, E. Shuryak, and A. V. Turbiner, Phys. Rev. D 92, 025046 (2015);

92, 089902 (2015) [erratum] [arXiv:1501.03993 [hep-th]] [Search INSPIRE].

19. M. A. Escobar-Ruiz, E. Shuryak, and A. V. Turbiner, Phys. Rev. D 92, 025047 (2015) [arXiv:1505.05115 [hep-th]] [Search INSPIRE].

20. T. Misumi, M. Nitta, and N. Sakai, J. High Energy Phys. 1509, 157 (2015) [arXiv:1507.00408 [hep-th]] [Search INSPIRE].

21. A. Behtash, G. V. Dunne, T. Schäfer, T. Sulejmanpasic, and M. Ünsal, Phys. Rev. Lett.

116, 011601 (2016) [arXiv:1510.00978 [hep-th]] [Search INSPIRE].

22. A. Behtash, G. V. Dunne, T. Schäfer, T. Sulejmanpasic, and M. Ünsal, Ann. Math. Sci. Appl.

2, 95 (2017) [arXiv:1510.03435 [hep-th]] [Search INSPIRE].

23. I. Gahramanov and K. Tezgin, Phys. Rev. D 93, 065037 (2016) [arXiv:1512.08466 [hep-th]] [Search INSPIRE].

24. G. V. Dunne and M. Unsal, arXiv:1603.04924 [math-ph] [Search INSPIRE].

25. C. Kozçaz, T. Sulejmanpasic, Y. Tanizaki, and M. Ünsal, Commun. Math. Phys. 364, 835 (2018) [arXiv:1609.06198 [hep-th]] [Search INSPIRE].

26. T. Fujimori, S. Kamata, T. Misumi, M. Nitta, and N. Sakai, Phys. Rev. D 94, 105002 (2016) [arXiv:1607.04205 [hep-th]] [Search INSPIRE].

27. G. V. Dunne and M. Ünsal, J. High Energy Phys. 1612, 002 (2016) [arXiv:1609.05770 [hep-th]] [Search INSPIRE].

28. M. Serone, G. Spada, and G. Villadoro, Phys. Rev. D 96, 021701(R) (2017) [arXiv:1612.04376 [hep-th]] [Search INSPIRE].

29. G. Basar, G. V. Dunne, and M. Ünsal, J. High Energy Phys. 1705, 087 (2017) [arXiv:1701.06572 [hep-th]] [Search INSPIRE].

30. G. Álvarez and H. J. Silverstone, J. Phys. Comm. 1, 025005 (2017) [arXiv:1706.00329 [math-ph]] [Search INSPIRE].

31. A. Behtash, G. V. Dunne, T. Schäfer, T. Sulejmanpasic, and M. Ünsal, J. High Energy Phys.

1806, 068 (2018) arXiv:1803.11533 [hep-th]] [Search INSPIRE].

32. Z. Duan, J. Gu, Y. Hatsuda, and T. Sulejmanpasic, J. High Energy Phys. 1901, 079 (2019) [arXiv:1806.11092 [hep-th]] [Search INSPIRE].

33. M. Raman and P. N. Bala Subramanian, Phys. Rev. D 101, 126014 (2020) [arXiv:2002.01794 [hep-th]] [Search INSPIRE].

34. N. Sueishi, Prog. Theor. Exp. Phys. 2021, 013B01 (2021) [arXiv:1912.03518 [hep-th]] [Search INSPIRE].

35. N. Sueishi, S. Kamata, T. Misumi, and M. Ünsal, J. High Energy Phys. 2012, 114 (2020) [arXiv:2008.00379 [hep-th]] [Search INSPIRE].

36. N. Sueishi, S. Kamata, T. Misumi, and M. Ünsal, arXiv:2103.06586 [quant-ph] [Search INSPIRE].

37. I. Aniceto and M. Spalin´ski, Phys. Rev. D 93, 085008 (2016) [arXiv:1511.06358 [hep-th]] [Search INSPIRE].

38. G. Bas¸ar and G. V. Dunne, Phys. Rev. D 92, 125011 (2015) [arXiv:1509.05046 [hep-th]] [Search INSPIRE].

39. J. Casalderrey-Solana, N. I. Gushterov, and B. Meiring, J. High Energy Phys. 1804, 042 (2018) [arXiv:1712.02772 [hep-th]] [Search INSPIRE].

40. A. Behtash, C. N. Cruz-Camacho, and M. Martinez, Phys. Rev. D 97, 044041 (2018) [arXiv:1711.01745 [hep-th]] [Search INSPIRE].

41. M. P. Heller and V. Svensson, Phys. Rev. D 98, 054016 (2018) [arXiv:1802.08225 [nucl-th]] [Search INSPIRE].

42. M. P. Heller, A. Serantes, M. Spalin´ski, V. Svensson, and B. Withers, arXiv:2007.05524 [hep-th] [Search INSPIRE].

43. I. Aniceto, J. Jankowski, B. Meiring, and M. Spalin´ski, J. High Energy Phys. 1902, 073 (2019) [arXiv:1810.07130 [hep-th]] [Search INSPIRE].

44. A. Behtash, S. Kamata, M. Martinez, T. Schäfer, and V. Skokov, Phys. Rev. D 103, 056010 (2021) [arXiv:2011.08235 [hep-ph]] [Search INSPIRE].

45. K. Ito, M. Mariño, and H. Shu, J. High Energy Phys. 1901, 228 (2019) [arXiv:1811.04812 [hep-th]] [Search INSPIRE].

46. L. Schepers and D. C. Thompson, Nucl. Phys. B 964, 115308 (2021) [arXiv:2007.03683 [hep-th]] [Search INSPIRE].

47. M. Mariño and T. Reis, arXiv:1905.09569 [hep-th] [Search INSPIRE].

48. M. Mariño and T. Reis, J. High Energy Phys. 2004, 160 (2020) [arXiv:1909.12134 [hep-th]] [Search INSPIRE].

49. M. Mariño and T. Reis, J. High Energy Phys. 2007, 216 (2020) [arXiv:1912.06228 [hep-th]] [Search INSPIRE].

50. M. Marino and T. Reis, arXiv:2006.05131 [hep-th] [Search INSPIRE].

51. M. Marino and T. Reis, arXiv:2010.16174 [hep-th] [Search INSPIRE].

52. M. Marino, R. M. Mas, and T. Reis, [arXiv:2102.03078 [hep-th] [Search INSPIRE].

53. M. Mariño, R. Schiappa, and M. Weiss, J. Math. Phys. 50, 052301 (2009) [arXiv:0809.2619 [hep-th]] [Search INSPIRE].

54. S. Garoufalidis, A. Its, A. Kapaev, and M. Mariño, Int. Math. Res. Not. 2012, 561 (2012) [arXiv:1002.3634 [math.CA]] [Search INSPIRE].

55. C.-T. Chan, H. Irie, and C.-H. Yeh, Nucl. Phys. B 854, 67 (2012) [arXiv:1011.5745 [hep-th]] [Search INSPIRE].

56. C.-T. Chan, H. Irie, and C.-H. Yeh, Nucl. Phys. B 855, 46 (2012) [arXiv:1109.2598 [hep-th]] [Search INSPIRE].

57. R. Schiappa and R. Vaz, Commun. Math. Phys. 330, 655 (2014) [arXiv:1302.5138 [hep-th]] [Search INSPIRE].

58. M. Mariño, J. High Energy Phys. 0803, 060 (2008) [arXiv:hep-th/0612127] [Search INSPIRE].

59. M. Mariño, R. Schiappa, and M. Weiss, Commun. Num. Theor. Phys. 2, 349 (2008) [arXiv:0711.1954 [hep-th]] [Search INSPIRE].

60. M. Mariño, J. High Energy Phys. 0812, 114 (2008) [arXiv:0805.3033 [hep-th]] [Search INSPIRE].

61. S. Pasquetti and R. Schiappa, Ann. Henri Poincaré 11, 351 (2010) [arXiv:0907.4082 [hep-th]] [Search INSPIRE].

62. I. Aniceto, R. Schiappa, and M. Vonk, Commun. Num. Theor. Phys. 6, 339 (2012) [arXiv:1106.5922 [hep-th]] [Search INSPIRE].

63. R. Couso-Santamaría, J. D. Edelstein, R. Schiappa, and M. Vonk, Ann. Henri Poincaré 17, 331 (2016) [arXiv:1308.1695 [hep-th]] [Search INSPIRE].

64. R. Couso-Santamaría, J. D. Edelstein, R. Schiappa, and M. Vonk, Commun. Math. Phys.

338, 285 (2015) [arXiv:1407.4821 [hep-th]] [Search INSPIRE].

65. A. Grassi, M. Mariño, and S. Zakany, J. High Energy Phys. 1505, 038 (2015) [arXiv:1405.4214 [hep-th]] [Search INSPIRE].

66. R. Couso-Santamaría, R. Schiappa, and R. Vaz, Ann. Phys. 356, 1 (2015) [arXiv:1501.01007 [hep-th] [Search INSPIRE].

67. R. Couso-Santamaría, R. Schiappa, and R. Vaz, Commun. Num. Theor. Phys. 11, 707 (2017) [arXiv:1605.07473 [math.AG]] [Search INSPIRE].

68. R. Couso-Santamaría, M. Mariño, and R. Schiappa, J. Phys. A: Math. Theor. 50, 145402 (2017) [arXiv:1610.06782 [hep-th]] [Search INSPIRE].

69. T. Kuroki and F. Sugino, J. High Energy Phys. 1905, 138 (2019) [arXiv:1901.10349 [hep-th]] [Search INSPIRE].

70. T. Kuroki, J. High Energy Phys. 2007, 118 (2020) [arXiv:2004.13346 [hep-th]] [Search INSPIRE].

71. D. Dorigoni and A. Kleinschmidt, Commun. Num. Theor. Phys. 15, 1 (2021) [arXiv:2001.11035 [hep-th]] [Search INSPIRE].

72. G. V. Dunne and M. Ünsal, J. High Energy Phys. 1211, 170 (2012) [arXiv:1210.2423 [hep-th]] [Search INSPIRE].

73. G. V. Dunne and M. Ünsal, Phys. Rev. D 87, 025015 (2013) [arXiv:1210.3646 [hep-th]] [Search INSPIRE].

74. A. Cherman, D. Dorigoni, G. V. Dunne, and M. Ünsal, Phys. Rev. Lett. 112, 021601 (2014) [arXiv:1308.0127 [hep-th]] [Search INSPIRE].

75. A. Cherman, D. Dorigoni, and M. Ünsal, J. High Energy Phys. 1510, 056 (2015) [arXiv:1403.1277 [hep-th]] [Search INSPIRE].

76. T. Misumi, M. Nitta, and N. Sakai, J. High Energy Phys. 1406, 164 (2014) [arXiv:1404.7225 [hep-th]] [Search INSPIRE].

77. M. Nitta, J. High Energy Phys. 1503, 108 (2015) [arXiv:1412.7681 [hep-th]] [Search INSPIRE].

78. M. Nitta, J. High Energy Phys. 1508, 063 (2015) [arXiv:1503.06336 [hep-th]] [Search INSPIRE].

79. A. Behtash, T. Sulejmanpasic, T. Schäfer, and M. Ünsal, Phys. Rev. Lett. 115, 041601 (2015) [arXiv:1502.06624 [hep-th]] [Search INSPIRE].

80. G. V. Dunne and M. Ünsal, J. High Energy Phys. 1509, 199 (2015) [arXiv:1505.07803 [hep-th]] [Search INSPIRE].

81. P. V. Buividovich, G. V. Dunne, and S. N. Valgushev, Phys. Rev. Lett. 116, 132001 (2016) [arXiv:1512.09021 [hep-th]] [Search INSPIRE].

82. S. Demulder, D. Dorigoni, and D. C. Thompson, J. High Energy Phys. 1607, 088 (2016) [arXiv:1604.07851 [hep-th]] [Search INSPIRE].

83. T. Sulejmanpasic, Phys. Rev. Lett. 118, 011601 (2017).

84. K. Okuyama and K. Sakai, J. High Energy Phys. 1808, 065 (2018) [arXiv:1806.00189 [hep-th]] [Search INSPIRE].

85. M. C. Abbott, Z. Bajnok, J. Balog, A. Hegedús, and S. Sadeghian, J. High Energy Phys.

2105, 253 (2021) [arXiv:2011.12254 [hep-th]] [Search INSPIRE].

86. M. C. Abbott, Z. Bajnok, J. Balog, and A. Hegedu˝s, Phys. Lett. B 818, 136369 (2021) [arXiv:2011.09897 [hep-th]] [Search INSPIRE].

87. K. Ishikawa, O. Morikawa, A. Nakayama, K. Shibata, H. Suzuki, and H. Takaura, Prog. Theor. Exp. Phys. 2020, 023B10 (2020) [arXiv:1908.00373 [hep-th]] [Search INSPIRE].

88. K. Ishikawa, M. Okuto, K. Shibata, and H. Suzuki, Prog. Theor. Exp. Phys. 2020, 063B02 (2020) [arXiv:2001.07302 [hep-th]] [Search INSPIRE].

89. S. Gukov, M. Marino, and P. Putrov, arXiv:1605.07615 [hep-th] [Search INSPIRE].

90. D. Gang and Y. Hatsuda, J. High Energy Phys. 1807, 053 (2018) [arXiv:1710.09994 [hep-th]] [Search INSPIRE].

91. D. H. Wu, J. High Energy Phys. 2102, 008 (2021) [arXiv:2010.13736 [hep-th]] [Search INSPIRE].

92. S. Garoufalidis, J. Gu, and M. Marino, Commun. Math. Phys. 386, 469 (2021) [arXiv:2007.10190 [hep-th]] [Search INSPIRE].

93. S. Garoufalidis, J. Gu, and M. Marino, arXiv:2012.00062 [math.GT] [Search INSPIRE].

94. H. Fuji, K. Iwaki, H. Murakami, and Y. Terashima, Commun. Math. Phys. 386, 225 (2021) [arXiv:2007.15872 [math.GT]] [Search INSPIRE].

95. F. Ferrari and P. Putrov, arXiv:2009.14196 [hep-th] [Search INSPIRE].

96. S. Gukov and C. Manolescu, arXiv:1904.06057 [math.GT] [Search INSPIRE].

97. M. Barsanti, S. Bolognesi, F. Canfora, and G. Tallarita, Eur. Phys. J. C 80, 1201 (2020) [arXiv:2006.02394 [hep-th]] [Search INSPIRE].

98. P. Argyres and M. Ünsal, Phys. Rev. Lett. 109, 121601 (2012) [arXiv:1204.1661 [hep-th]] [Search INSPIRE].

99. G. V. Dunne, M. Shifman, and M. Ünsal, Phys. Rev. Lett. 114, 191601 (2015) [arXiv:1502.06680 [hep-th]] [Search INSPIRE].

100. M. Yamazaki and K. Yonekura, J. High Energy Phys. 1707, 088 (2017) [arXiv:1704.05852 [hep-th]] [Search INSPIRE].

101. H. Mera, T. G. Pedersen, and B. K. Nikolic´, Phys. Rev. D 97, 105027 (2018) [arXiv:1802.06034 [hep-th]] [Search INSPIRE].

102. E. Itou, J. High Energy Phys. 1905, 093 (2019) [arXiv:1811.05708 [hep-th]] [Search INSPIRE].

103. F. Canfora, M. Lagos, S. H. Oh, J. Oliva, and A. Vera, Phys. Rev. D 98, 085003 (2018) [arXiv:1809.10386 [hep-th]] [Search INSPIRE].

104. M. Ashie, O. Morikawa, H. Suzuki, H. Takaura, and K. Takeuchi, Prog. Theor. Exp. Phys.

2020, 023B01 (2020) [arXiv:1909.05489 [hep-th]] [Search INSPIRE].

105. K. Ishikawa, O. Morikawa, K. Shibata, H. Suzuki, and H. Takaura, Prog. Theor. Exp. Phys.

2020, 013B01 (2020) [arXiv:1909.09579 [hep-th]] [Search INSPIRE].

106. M. Ünsal, arXiv:2007.03880 [hep-th] [Search INSPIRE].

107. M. Ashie, O. Morikawa, H. Suzuki, and H. Takaura, Prog. Theor. Exp. Phys. 2020, 093B02 (2020) [arXiv:2005.07407 [hep-th]] [Search INSPIRE].

108. O. Morikawa and H. Takaura, Phys. Lett. B 807, 135570 (2020) [arXiv:2003.04759 [hep-th]] [Search INSPIRE].

109. J. G. Russo, J. High Energy Phys. 1206, 038 (2012) [arXiv:1203.5061 [hep-th]] [Search INSPIRE].

110. I. Aniceto, J. G. Russo, and R. Schiappa, J. High Energy Phys. 1503, 172 (2015) [arXiv:1410.5834 [hep-th]] [Search INSPIRE].

111. I. Aniceto, J. Phys. A: Math. Theor. 49, 065403 (2016) [arXiv:1506.03388 [hep-th]] [Search INSPIRE].

112. M. Honda, Phys. Rev. Lett. 116, 211601 (2016) [arXiv:1603.06207 [hep-th]] [Search INSPIRE].

113. M. Honda, Phys. Rev. D 94, 025039 (2016) [arXiv:1604.08653 [hep-th]] [Search INSPIRE].

114. S. Gukov, Nucl. Phys. B 919, 583 (2017) [arXiv:1608.06638 [hep-th]] [Search INSPIRE].

115. M. Honda, Phys. Rev. Lett. 121, 021601 (2018) [arXiv:1710.05010 [hep-th]] [Search INSPIRE].

116. S. Gukov, D. Pei, P. Putrov, and C. Vafa, J. Knot Theor. Ramifications 29, 2040003 (2020) [arXiv:1701.06567 [hep-th]] [Search INSPIRE].

117. D. Dorigoni and P. Glass, SciPost Phys. 4, 012 (2018) [arXiv:1711.04802 [hep-th]] [Search INSPIRE].

118. M. Honda and D. Yokoyama, Phys. Rev. D 100, 025012 (2019) [arXiv:1711.10799 [hep-th]] [Search INSPIRE].

119. T. Fujimori, M. Honda, S. Kamata, T. Misumi, and N. Sakai, Prog. Theor. Exp. Phys.

2018, 123B03 (2018) [arXiv:1805.12137 [hep-th]] [Search INSPIRE].

120. A. Grassi, J. Gu, and M. Mariño, J. High Energy Phys. 2007, 106 (2020) [arXiv:1908.07065 [hep-th]] [Search INSPIRE].

121. D. Dorigoni and P. Glass, J. High Energy Phys. 1912, 085 (2019) [arXiv:1909.05262 [hep-th]] [Search INSPIRE].

122. D. Dorigoni, M. B. Green, and C. Wen, J. High Energ. Phys. 2105, 089 (2021) [arXiv:2102.09537 [hep-th]] [Search INSPIRE].

123. L. Klaczynski Ann. Phys. 372, 397 (2016) [arXiv:1601.04140 [hep-th]] [Search INSPIRE].

124. J. Bersini, A. Maiezza, and J. C. Vasquez, Ann. Phys. 415, 168126 (2020) [arXiv:1910.14507

[hep-th]] [Search INSPIRE].

125. M. P. Bellon and E. I. Russo, Lett. Math. Phys. 111, 42 (2021) [arXiv:2011.13822 [hep-th]] [Search INSPIRE].

126. M. Borinsky and G. V. Dunne, Nucl. Phys. B 957, 115096 (2020) [arXiv:2005.04265 [hep-th]. [Search INSPIRE].

127. M. P. Bellon and E. I. Russo, Lett. Math. Phys. 111, 42 (2021) [arXiv:2007.15675 [hep-th]] [Search INSPIRE].

128. J. Engelsöy, J. Larana-Aragon, B. Sundborg, and N. Wintergerst, J. High Energy Phys.

2009, 103 (2020) [arXiv:2007.00589 [hep-th]] [Search INSPIRE].

129. N. Dondi, I. Kalogerakis, D. Orlando, and S. Reffert, J. High Energ. Phys. 2105, 035 (2021)

[arXiv:2102.12488 [hep-th]] [Search INSPIRE].

130. E. Witten, AMS/IP Stud. Adv. Math. 50, 347 (2011) [arXiv:1001.2933 [hep-th]] [Search INSPIRE].

131. E. Witten, arXiv:1009.6032 [hep-th] [Search INSPIRE].

132. D. Harlow, J. Maltz, and E. Witten, J. High Energy Phys. 1112, 071 (2011) [arXiv:1108.4417

[hep-th]] [Search INSPIRE].

133. M. Cristoforetti, F. Di Renzo, and L. Scorzato [AuroraScience Collaboration], Phys. Rev. D

86, 074506 (2012) [arXiv:1205.3996 [hep-lat]] [Search INSPIRE].

134. M. Cristoforetti, F. Di Renzo, A. Mukherjee, and L. Scorzato, Phys. Rev. D 88, 051501(R) (2013)

[arXiv:1303.7204 [hep-lat]] [Search INSPIRE].

135. H. Fujii, D. Honda, M. Kato, Y. Kikukawa, S. Komatsu, and T. Sano, J. High Energy Phys.

1310, 147 (2013) [arXiv:1309.4371 [hep-lat]] [Search INSPIRE].

136. A. Mukherjee, M. Cristoforetti, and L. Scorzato, Phys. Rev. D 88, 051502(R) (2013)

[arXiv:1308.0233 [physics.comp-ph]] [Search INSPIRE].

137. G. Aarts, Phys. Rev. D 88, 094501 (2013) [arXiv:1308.4811 [hep-lat]] [Search INSPIRE].

138. M. Cristoforetti, F. Di Renzo, G. Eruzzi, A. Mukherjee, C. Schmidt, L. Scorzato, and C. Torrero,

Phys. Rev. D 89, 114505 (2014) [arXiv:1403.5637 [hep-lat]] [Search INSPIRE].

139. Y. Tanizaki and T. Koike, Ann. Phys. 351, 250 (2014) [arXiv:1406.2386 [math-ph]] [Search INSPIRE].

140. Y. Tanizaki, H. Nishimura, and K. Kashiwa, Phys. Rev. D 91, 101701(R) (2015) [arXiv:1504.02979

[hep-th]] [Search INSPIRE].

141. A. Alexandru, G. Bas¸ar, P. F. Bedaque, G. W. Ridgway, and N. C. Warrington, Phys. Rev. D

95, 014502 (2017) [arXiv:1609.01730 [hep-lat]] [Search INSPIRE].

142. A. Alexandru, G. Bas¸ar, P. Bedaque, G. W. Ridgway, and N. C. Warrington, Phys. Rev. D

94, 045017 (2016) [arXiv:1606.02742 [hep-lat]] [Search INSPIRE].

143. J. G. Russo and M. Tierz, Phys. Rev. D 95, 031901(R) (2017) [arXiv:1610.08527 [hep-th]] [Search INSPIRE].

144. A. Mukherjee and M. Cristoforetti, Phys. Rev. B 90, 035134 (2014) [arXiv:1403.5680

[cond-mat.str-el]] [Search INSPIRE].

145. Y. Tanizaki, Y. Hidaka, and T. Hayata, New J. Phys. 18, 033002 (2016) [arXiv:1509.07146 [hep-th]. [Search INSPIRE].

146. A. Ahmed, arXiv:1802.09095 [hep-th] [Search INSPIRE].

147. T. Kanazawa and Y. Tanizaki, J. High Energy Phys. 1503, 044 (2015) [arXiv:1412.2802 [hep-th]. [Search INSPIRE].

148. A. Ahmed and G. V. Dunne, J. High Energy Phys. 1711, 054 (2017) [arXiv:1710.01812 [hep-th]. [Search INSPIRE].

149. A. Ahmed and G. V. Dunne, Phys. Lett. B 785, 342 (2018) [arXiv:1808.05236 [hep-th]] [Search INSPIRE].

150. D. J. Gross and E. Witten, Phys. Rev. D 21, 446 (1980).

151. S. R. Wadia, Phys. Lett. B 93, 403 (1980).

152. G. V. Dunne, J. Phys. A: Math. Theor. 52, 463001 (2019) [arXiv:1901.02076 [hep-th]] [Search INSPIRE].

153. O. Costin and G. V. Dunne, J. Phys. A: Math. Theor. 52, 445205 (2019) [arXiv:1904.11593 [hep-th]. [Search INSPIRE].

154. V. Pestun, Commun. Math. Phys. 313, 71 (2012) [arXiv:0712.2824 [hep-th]] [Search INSPIRE].

155. A. Kapustin, B. Willett, and I. Yaakov, J. High Energy Phys. 1003, 089 (2010) [arXiv:0909.4559

[hep-th]] [Search INSPIRE].

156. N. Hama, K. Hosomichi, and S. Lee, J. High Energy Phys. 1103, 127 (2011) [arXiv:1012.3512

[hep-th]] [Search INSPIRE].

157. D. L. Jafferis, J. High Energy Phys. 1205, 159 (2012) [arXiv:1012.3210 [hep-th]] [Search INSPIRE].

158. M. V. Berry and C. J. Howls, Proc. Math. Phys. Sci. 434, 657 (1991).

159. W. G. C. Boyd, Proc. R. Soc. A 440, 493 (1993).

160. W. G. C. Boyd, Proc. R. Soc. A 447, 609 (1994).

161. O. Costin and G. V. Dunne, arXiv:2009.01962 [math.CV] [Search INSPIRE].

162. A. Sen, J. High Energy Phys. 1311, 029 (2013) [arXiv:1304.0458 [hep-th]] [Search INSPIRE].

163. C. Beem, L. Rastelli, A. Sen, and B. C. van Rees, J. High Energy Phys. 1404, 122 (2014)

[arXiv:1306.3228 [hep-th]] [Search INSPIRE].

164. L. F. Alday and A. Bissi, J. High Energy Phys. 1407, 007 (2014) [arXiv:1311.3215 [hep-th]] [Search INSPIRE].

165. M. Honda, J. High Energy Phys. 1412, 019 (2014) [arXiv:1408.2960 [hep-th]] [Search INSPIRE].

166. M. Honda and D. P. Jatkar, Nucl. Phys. B 900, 533 (2015) [arXiv:1504.02276 [hep-th]] [Search INSPIRE].

167. A. Chowdhury, M. Honda, and S. Thakur, J. High Energy Phys. 1704, 137 (2017) [arXiv:1607.01716

[hep-th]] [Search INSPIRE].

168. C. Cordova, D. S. Freed, H. T. Lam, and N. Seiberg, SciPost Phys. 8, 001 (2020) [arXiv:1905.09315

[hep-th]] [Search INSPIRE].

169. C. Cordova, D. S. Freed, H. T. Lam, and N. Seiberg, SciPost Phys. 8, 002 (2020) [arXiv:1905.13361

[hep-th]] [Search INSPIRE].

170. R. Kuik, PhD thesis, Rijksuniversiteit Groningen (2003).

参考文献をもっと見る