Exploring the phase transition in charged Gauss–Bonnet black holes: a holographic thermodynamics perspectives

IF 2.1 4区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS General Relativity and Gravitation Pub Date : 2024-08-13 DOI:10.1007/s10714-024-03285-x
Jafar Sadeghi, Mohammad Reza Alipour, Mohammad Ali S. Afshar, Saeed Noori Gashti
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Abstract

In this paper, we delve into the study of thermodynamics and phase transition of charged Gauss–Bonnet black holes within the context of anti-de Sitter space, with particular emphasis on the central charge’s role within the dual conformal field theory (CFT). We employ a holographic methodology that interprets the cosmological constant and the Newton constant as thermodynamic variables, leading to the derivation of a modified first law of thermodynamics that incorporates the thermodynamic volume and pressure. Our findings reveal that the central charge of the CFT is intrinsically linked to the variation of these constants, and its stability can be ensured by simultaneous adjustment of these constants. We further explore the phase structures of the black holes, utilizing the free energy. Our research uncovers the existence of a critical value of the central charge, beyond which the phase diagram displays a first-order phase transition between small and large black holes. We also delve into the implications of our findings on the complexity of the CFT. Our conclusions underscore the significant role of the central charge in the holographic thermodynamics and phase transition of charged Gauss–Bonnet black holes. Furthermore, we conclude that while the central charge considered provides suitable and satisfactory solutions for this black hole in 4 and 5 dimensions, it becomes necessary to introduce a unique central charge for this structure of modified gravity. In essence, the central charge in holographic thermodynamics is not a universal value and requires modification in accordance with different modified gravities. Consequently, the physics of the problem will significantly deviate from the one discussed in this article, indicating a rich and complex landscape for future work.

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探索带电高斯-波内特黑洞的相变:全息热力学视角
在本文中,我们深入研究了反德西特空间背景下带电高斯-波奈黑洞的热力学和相变,特别强调了中心电荷在双重共形场论(CFT)中的作用。我们采用全息方法将宇宙常数和牛顿常数解释为热力学变量,从而推导出包含热力学体积和压力的修正热力学第一定律。我们的研究结果表明,CFT 的中心电荷与这些常数的变化有着内在联系,通过同时调整这些常数可以确保其稳定性。我们利用自由能进一步探索了黑洞的相结构。我们的研究发现了中心电荷临界值的存在,超过这个临界值,相图就会在小黑洞和大黑洞之间出现一阶相变。我们还深入探讨了我们的发现对 CFT 复杂性的影响。我们的结论强调了中心电荷在带电高斯-波内特黑洞的全息热力学和相变中的重要作用。此外,我们还得出结论,虽然所考虑的中心电荷为这种黑洞在 4 维和 5 维中提供了合适且令人满意的解决方案,但有必要为这种修正引力结构引入一种独特的中心电荷。从本质上讲,全息热力学中的中心电荷并不是一个通用值,需要根据不同的修正引力进行修改。因此,该问题的物理学原理将与本文所讨论的有很大不同,这为未来的工作提供了丰富而复杂的前景。
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来源期刊
General Relativity and Gravitation
General Relativity and Gravitation 物理-天文与天体物理
CiteScore
4.60
自引率
3.60%
发文量
136
审稿时长
3 months
期刊介绍: General Relativity and Gravitation is a journal devoted to all aspects of modern gravitational science, and published under the auspices of the International Society on General Relativity and Gravitation. It welcomes in particular original articles on the following topics of current research: Analytical general relativity, including its interface with geometrical analysis Numerical relativity Theoretical and observational cosmology Relativistic astrophysics Gravitational waves: data analysis, astrophysical sources and detector science Extensions of general relativity Supergravity Gravitational aspects of string theory and its extensions Quantum gravity: canonical approaches, in particular loop quantum gravity, and path integral approaches, in particular spin foams, Regge calculus and dynamical triangulations Quantum field theory in curved spacetime Non-commutative geometry and gravitation Experimental gravity, in particular tests of general relativity The journal publishes articles on all theoretical and experimental aspects of modern general relativity and gravitation, as well as book reviews and historical articles of special interest.
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