Papers
Topics
Authors
Recent
2000 character limit reached

Rényi Topology of Charged-flat Black Hole: Hawking-Page and Van-der-Waals Phase Transitions (2309.14069v1)

Published 25 Sep 2023 in hep-th

Abstract: In this paper, we extend the proposed setup in [1,2] for finding the topological charges associated with the Hawking-Page and Van-der-Waals transition points as well as equilibrium phases to catch the nonextensive nature of the black hole entropy, Rigorously speaking we incorporate the R\'enyi statistics formalism in off-shell Bragg-Williams free energy landscape to examine topologically the Hawking-Page phase transition related to the uncharged/charged-flat black hole in grand canonical and the Van-der- Waals transition in the canonical ensemble and where a vortex/anti-vortex structure is found. For this purpose, we introduce three mappings, the $\psi$- and $\xi$-mapping, for phase transitions classification and the $\eta$-mapping for equilibrium phases classification. We found that Hawking-Page and Van-der-Waals phase transitions belong to different topological classes and exhibit an interplay of total charge values hinting to a possible new correspondence. Our topological study provides further substantiation for a possible conjecture positing a correspondence between the thermodynamic characteristics of black holes in asymptotically flat spacetime using R\'enyi statistics, and those in asymptotically Anti-de-Sitter spacetime employing Gibbs-Boltzmann statistics.

Definition Search Book Streamline Icon: https://streamlinehq.com
References (86)
  1. Topology of critical points and Hawking-Page transition. Phys. Rev. D, 106(6):064059, 2022.
  2. Black Hole Solutions as Topological Thermodynamic Defects. Phys. Rev. Lett., 129(19):191101, 2022.
  3. S. W. Hawking. Black Holes and Thermodynamics. Phys. Rev. D, 13:191–197, 1976.
  4. Thermodynamics of Black Holes in anti-De Sitter Space. Commun. Math. Phys., 87:577, 1983.
  5. The Four laws of black hole mechanics. Commun. Math. Phys., 31:161–170, 1973.
  6. Jacob D. Bekenstein. Black holes and entropy. Phys. Rev. D, 7:2333–2346, 1973.
  7. S. W. Hawking. Particle Creation by Black Holes. Commun. Math. Phys., 43:199–220, 1975. [Erratum: Commun.Math.Phys. 46, 206 (1976)].
  8. Jacob D. Bekenstein. Generalized second law of thermodynamics in black hole physics. Phys. Rev. D, 9:3292–3300, 1974.
  9. Mark Srednicki. Entropy and area. Phys. Rev. Lett., 71:666–669, 1993.
  10. Super-Rényi entropy & Wilson loops for 𝒩=4𝒩4\mathcal{N}=4caligraphic_N = 4 SYM and their gravity duals. JHEP, 12:001, 2014.
  11. Conceptual analysis of black hole entropy in string theory. Stud. Hist. Phil. Sci. B, 69:82–111, 2020.
  12. Constantino Tsallis. Black Hole Entropy: A Closer Look. Entropy, 22(1):17, 2019.
  13. Nonextensive Black Hole Entropy and Quantum Gravity Effects at the Last Stages of Evaporation. Phys. Rev. D, 103(2):026021, 2021.
  14. Rényi entropies, the analytic bootstrap, and 3D quantum gravity at higher genus. JHEP, 07:059, 2015.
  15. Holographic Calculations of Renyi Entropy. JHEP, 12:047, 2011.
  16. Supersymmetric Renyi entropy in CFT22{}_{2}start_FLOATSUBSCRIPT 2 end_FLOATSUBSCRIPT and AdS33{}_{3}start_FLOATSUBSCRIPT 3 end_FLOATSUBSCRIPT. JHEP, 01:042, 2016.
  17. Xi Dong. The Gravity Dual of Renyi Entropy. Nature Commun., 7:12472, 2016.
  18. Emergent phase, thermodynamic geometry, and criticality of charged black holes from Rényi statistics. Phys. Rev. D, 105(12):124049, 2022.
  19. Solid-liquid phase transition and heat engine in an asymptotically flat Schwarzschild black hole via the Rényi extended phase space approach. Phys. Rev. D, 104(6):064004, 2021.
  20. Area-law versus Rényi and Tsallis black hole entropies. Phys. Rev. D, 104(8):084030, 2021.
  21. On Rényi universality formula of charged flat black holes from Hawking-Page phase transition. Phys. Lett. B, 833:137378, 2022.
  22. Equilibrium temperature for black holes with nonextensive entropy. Eur. Phys. J. C, 83(2):169, 2023.
  23. On some phase equilibrium features of charged black holes in flat spacetime via Rényi statistics. arXiv:2304.04945, 4 2023.
  24. Generalized uncertainty principle impact on nonextensive black hole thermodynamics. Class. Quant. Grav., 40(14):145001, 2023.
  25. Thermodynamics of asymptotically de Sitter black hole in dRGT massive gravity from Rényi entropy. Eur. Phys. J. C, 82(12):1174, 2022.
  26. AdS to dS phase transition mediated by thermalon in Einstein-Gauss-Bonnet gravity from Rényi statistics. Nucl. Phys. B, 989:116140, 2023.
  27. Extended phase space thermodynamics for charged and rotating black holes and Born-Infeld vacuum polarization. JHEP, 11:110, 2012.
  28. P-V criticality of charged AdS black holes. JHEP, 07:033, 2012.
  29. On Heat Properties of AdS Black Holes in Higher Dimensions. JHEP, 05:149, 2015.
  30. Black hole chemistry: thermodynamics with Lambda. Class. Quant. Grav., 34(6):063001, 2017.
  31. Black hole chemistry. Can. J. Phys., 93(9):999–1002, 2015.
  32. Multicritical phase transitions in Lovelock AdS black holes. Phys. Rev. D, 107(8):084035, 2023.
  33. Reentrant phase transitions in rotating anti–de Sitter black holes. Phys. Rev. D, 88(10):101502, 2013.
  34. Multiple Reentrant Phase Transitions and Triple Points in Lovelock Thermodynamics. JHEP, 09:080, 2014.
  35. Geometrothermodynamics of higher dimensional black holes. Gen. Rel. Grav., 45:1603–1617, 2013.
  36. Phase transitions and geothermodynamics of black holes in dRGT massive gravity. Eur. Phys. J. C, 79(4):342, 2019.
  37. Thermogeometric description of the van der Waals like phase transition in AdS black holes. Phys. Rev. D, 95(10):104024, 2017.
  38. Signature of the Van der Waals like small-large charged AdS black hole phase transition in quasinormal modes. JHEP, 09:179, 2014.
  39. Behavior of quasinormal modes and high dimension RN–AdS black hole phase transition. Eur. Phys. J. C, 76(12):676, 2016.
  40. Critical Phenomena of Born-Infeld-de Sitter Black Holes in Cavities. JHEP, 05:136, 2019.
  41. On Einstein-non linear-Maxwell-Yukawa de-Sitter black hole thermodynamics. Nucl. Phys. B, 963:115305, 2021.
  42. Effective thermodynamics and critical phenomena of rotating regular-de Sitter black holes. Class. Quant. Grav., 37(18):185003, 2020.
  43. Thermodynamics and kinetics of Hawking-Page phase transition. Phys. Rev. D, 102(2):024085, 2020.
  44. Born-Infeld-AdS black hole phase structure: Landau theory and free energy landscape approaches. 2303.11711, 3 2023.
  45. Thermal dynamic phase transition of Reissner-Nordström Anti-de Sitter black holes on free energy landscape. JHEP, 10:090, 2020.
  46. Phuc H. Nguyen. An equal area law for holographic entanglement entropy of the AdS-RN black hole. JHEP, 12:139, 2015.
  47. H. El Moumni. Revisiting the phase transition of AdS-Maxwell–power-Yang–Mills black holes via AdS/CFT tools. Phys. Lett. B, 776:124–132, 2018.
  48. Holographic Entanglement Entropy and Van der Waals transitions in Einstein-Maxwell-Dilaton theory. Phys. Rev. D, 99(6):064002, 2019.
  49. Yishi Duan. THE STRUCTURE OF THE TOPOLOGICAL CURRENT. SLAC-PUB-3301, 3 1984.
  50. The bifurcation theory of the Gauss-Bonnet-Chern topological current and Morse function. Nucl. Phys. B, 514:705–720, 1998.
  51. Evolution of the Chern-Simons vortices. Phys. Rev. D, 61:045004, 2000.
  52. Universal Properties of Light Rings for Stationary Axisymmetric Spacetimes. Phys. Rev. D, 103(10):104031, 2021.
  53. Pedro Bargueño. Light rings in static and extremal black holes. Phys. Rev. D, 107(10):104029, 2023.
  54. Light-Ring Stability for Ultracompact Objects. Phys. Rev. Lett., 119(25):251102, 2017.
  55. Pedro V. P. Cunha and Carlos A. R. Herdeiro. Stationary black holes and light rings. Phys. Rev. Lett., 124(18):181101, 2020.
  56. Zhong-Ying Fan. Topological interpretation for phase transitions of black holes. Phys. Rev. D, 107(4):044026, 2023.
  57. Revisiting thermodynamic topologies of black holes. JHEP, 01:102, 2023.
  58. Topology of black hole thermodynamics. Phys. Rev. D, 105(10):104003, 2022.
  59. Topology of black hole thermodynamics in Gauss-Bonnet gravity. Phys. Rev. D, 105(10):104053, 2022.
  60. Vortex-antivortex pair creation in black hole thermodynamics. Phys. Rev. D, 107(4):046013, 2023.
  61. Topology of Born-Infeld-AdS Black Hole Phase Transition. arXiv:2306.11212, 6 2023.
  62. Bardeen black hole thermodynamics from topological perspective. Annals Phys., 455:169391, 2023.
  63. Topology of thermodynamics in R-charged black holes. Phys. Rev. D, 107(10):106009, 2023.
  64. Bulk-boundary thermodynamic equivalence: a topology viewpoint. JHEP, 06:115, 2023.
  65. Di Wu and Shuang-Qing Wu. Topological classes of thermodynamics of rotating AdS black holes. Phys. Rev. D, 107(8):084002, 2023.
  66. Di Wu. Topological classes of rotating black holes. Phys. Rev. D, 107(2):024024, 2023.
  67. Topology of black hole thermodynamics in Lovelock gravity. Phys. Rev. D, 107(6):064015, 2023.
  68. Topological natures of the Gauss-Bonnet black hole in AdS space. Phys. Rev. D, 107(6):064023, 2023.
  69. Thermal stability of hairy black holes. Physical Review D, 107:084053, 4 2023.
  70. Juan Martin Maldacena. The Large N limit of superconformal field theories and supergravity. Adv. Theor. Math. Phys., 2:231–252, 1998.
  71. Edward Witten. Anti-de Sitter space and holography. Adv. Theor. Math. Phys., 2:253–291, 1998.
  72. Edward Witten. Anti-de Sitter space, thermal phase transition, and confinement in gauge theories. Adv. Theor. Math. Phys., 2:505–532, 1998.
  73. Ricci flat black holes and Hawking-Page phase transition in Gauss-Bonnet gravity and dilaton gravity. Phys. Rev. D, 76:024011, 2007.
  74. Umut Gursoy. Continuous Hawking-Page transitions in Einstein-scalar gravity. JHEP, 01:086, 2011.
  75. Shao-Jun Zhang. Hawking–Page phase transition in new massive gravity. Phys. Lett. B, 747:158–163, 2015.
  76. Hawking-Page transition in holographic massive gravity. Phys. Rev. D, 91(4):046003, 2015.
  77. Phases of higher spin black holes: Hawking-Page, transitions between black holes and a critical point. Phys. Rev. D, 96(4):046017, 2017.
  78. The Hawking–Page phase transitions in the extended phase space in the Gauss–Bonnet gravity. Eur. Phys. J. C, 80(4):305, 2020.
  79. Thermodynamics and Van der Waals phase transition of charged black holes in flat spacetime via Rényi statistics. Phys. Rev. D, 102(6):064014, 2020.
  80. Critical phenomena of charged dilatonic black holes through rényi statistics approach. International Journal of Modern Physics D, 31(5):22500407, 3 2022.
  81. P-V criticality of AdS black holes in a general framework. Phys. Lett. B, 773:203–207, 2017.
  82. Gu-Qiang Li. Effects of dark energy on P–V criticality of charged AdS black holes. Phys. Lett. B, 735:256–260, 2014.
  83. Thermodynamics and phase transition structure of charged black holes in f⁢(r)𝑓𝑟f(r)italic_f ( italic_r ) gravity background from rényi statistics perception. Nuclear Physics B, 994:116316, 2023.
  84. T. S. Biró and P. Ván. Zeroth law compatibility of nonadditive thermodynamics. Phys. Rev. E, 83:061147, Jun 2011.
  85. Black Hole Solutions as Topological Thermodynamic Defects. Physical Review Letters, 129(19):1–7, 2022.
  86. On some phase equilibrium features of charged black holes in flat spacetime via Rényi statistics. arXiv:2304.04945v1, 2023.
Citations (19)

Summary

We haven't generated a summary for this paper yet.

Whiteboard

Paper to Video (Beta)

Open Problems

We haven't generated a list of open problems mentioned in this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.

Collections

Sign up for free to add this paper to one or more collections.