论文标题

Rényi熵的DRGT大量重力中渐近脱水的热力学

Thermodynamics of Asymptotically de-Sitter Black Hole in dRGT Massive Gravity from Rényi entropy

论文作者

Chunaksorn, Phuwadon, Hirunsirisawat, Ekapong, Nakarachinda, Ratchaphat, Tannukij, Lunchakorn, Wongjun, Pitayuth

论文摘要

通过使用Rényi熵研究了渐近de Sitter(DS)时空中De Rham-Gabadadze-Tolley(DRGT)黑洞的热力学特性。已经发现,标准Gibbs-Boltzmann统计数据所描述的具有渐近DS时空的黑洞不能在热力学上稳定。此外,通常存在两个与具有不同温度的热力学系统相对应的两个范围,从而导致非平衡状态。因此,为了获得稳定的DRGT黑洞,我们使用替代的Rényi统计数据来分析分离的系统方法和有效系统方法中的热力学特性。有趣的是,我们发现可能同时获得DRGT黑洞的正压和体积,而Schwarzschild-de Sitter(Sch-DS)黑洞可能会同时获得DRGT黑洞。此外,确定了热力学稳定的黑洞的无XTAGIDE参数上的边界。另外,指出了由不同方法描述的系统之间的关键差异,例如,指出了鹰页面相变的温度曲线和类型。

The thermodynamic properties of the de Rham-Gabadadze-Tolley (dRGT) black hole in the asymptotically de Sitter (dS) spacetime are investigated by using Rényi entropy. It has been found that the black hole with asymptotically dS spacetime described by the standard Gibbs-Boltzmann statistics cannot be thermodynamically stable. Moreover, there generically exist two horizons corresponding to two thermodynamic systems with different temperatures, leading to a nonequilibrium state. Therefore, in order to obtain the stable dRGT black hole, we use the alternative Rényi statistics to analyze the thermodynamics properties in both the separated system approach and the effective system approach. Interestingly, we found that it is possible concurrently obtain positive pressure and volume for the dRGT black hole while it is not for the Schwarzschild-de Sitter (Sch-dS) black hole. Furthermore, the bounds on the nonextensive parameter for which the black hole being thermodynamically stable are determined. In addition, the key differences between the systems described by different approaches, e.g., temperature profiles and types of the Hawking-Page phase transition are pointed out.

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