Thermodynamics of AdS-Schwarzschild-like black hole in loop quantum gravity

IF 4.2 2区 物理与天体物理 Q2 PHYSICS, PARTICLES & FIELDS The European Physical Journal C Pub Date : 2024-11-18 DOI:10.1140/epjc/s10052-024-13505-y
Rui-Bo Wang, Shi-Jie Ma, Lei You, Yu-Cheng Tang, Yu-Hang Feng, Xian-Ru Hu, Jian-Bo Deng
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Abstract

We obtained the metric of the Schwarzschild-like black hole with loop quantum gravity (LQG) corrections in anti-de Sitter (AdS) space-time, under the assumption that the cosmological constant is decoupled in LQG. We investigated its thermodynamics, including the equation of state, criticality, heat capacity, and Gibbs free energy. The \(P-v\) graph was plotted, and the critical behavior was calculated. It was found that, due to the LQG effect, the quantum-corrected Schwarzschild-AdS black hole exhibits a critical point and a critical ratio of 7/18, which differs from the Reissner–Nordstr\(\ddot{\textrm{o}}\)m-AdS black hole’s ratio of 3/8 (the same as that of the Van der Waals system) slightly. However, there are still some similarities compared to the Van der Waals system, such as the same critical exponents and a similar \(P-v\) graph. Moreover, it is concluded that the energy-momentum tensor related to the black hole’s mass could violate the conventional first law of thermodynamics. This modified first law may violate the conservation of Gibbs free energy during the small black hole-large black hole phase transitions, potentially indicating the occurrence of the zeroth-order phase transition. The Joule–Thomson expansion was also studied. Interestingly, compared to the Schwarzschild-AdS black hole, the LQG effect leads to inversion points. The inversion curve divides the \(\left( P,T\right) \) coordinate system into two regions: a heating region and a cooling region, as shown in detail by the inversion curves and isenthalpic curves. The results indicated that there is a minimum inversion mass, below which any black hole will not possess an inversion point.

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环量子引力中类似 AdS-Schwarzschild 黑洞的热力学
我们得到了反德西特(AdS)时空中具有环量子引力(LQG)修正的类施瓦茨黑洞的度量,假设宇宙学常数在LQG中是解耦的。我们研究了它的热力学,包括状态方程、临界性、热容量和吉布斯自由能。绘制了 \(P-v\) 图,并计算了临界行为。结果发现,由于 LQG 效应,量子修正的 Schwarzschild-AdS 黑洞显示出一个临界点,临界比为 7/18,与 Reissner-Nordstr\(\ddot\textrm{o}}\)m-AdS 黑洞的比值 3/8(与范德华体系的比值相同)略有不同。然而,与范德瓦耳斯系统相比,黑洞仍有一些相似之处,如相同的临界指数和相似的\(P-v\)图。此外,研究还得出结论,与黑洞质量相关的能量-动量张量可能违反了传统的热力学第一定律。这一修正的第一定律可能会在小黑洞-大黑洞相变过程中违反吉布斯自由能守恒,从而可能预示着零阶相变的发生。此外还研究了焦耳-汤姆森膨胀。有趣的是,与施瓦兹希尔德-AdS 黑洞相比,LQG 效应导致了反转点。反转曲线将坐标系分为两个区域:加热区和冷却区。结果表明,存在一个最小反转质量,低于这个质量,任何黑洞都不会拥有反转点。
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来源期刊
The European Physical Journal C
The European Physical Journal C 物理-物理:粒子与场物理
CiteScore
8.10
自引率
15.90%
发文量
1008
审稿时长
2-4 weeks
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