论文标题

4D EGB重力与非线性电动力学相关的4D EGB重力中的广告黑洞的相变

Phase transition of AdS black holes in 4D EGB gravity coupled to nonlinear electrodynamics

论文作者

Ghosh, Sushant G., Singh, Dharm Veer, Kumar, Rahul, Maharaj, Sunil D.

论文摘要

Einstein-Gauss-Bonnet(EGB)重力是对Einstein-Hilbert Gravity Ration的二次曲率校正的结果,以$ d> 4 $尺寸的高斯 - 基因网(GB)术语的形式形式,EGB重力在$ 4D $ 4D $中是拓扑的。最近,已经提出了几种正规化的方法,即EGB的$ d \至4 $限制,以$ 4D $的非平凡重力动态。由反DE保姆重力/共形场理论对应关系(ADS/CFT)的重要性,我们分析了用ADS渐近化$ 4D $ EGB重力与非线性电动力学(NED)磁场耦合的黑洞。对于静态的球形对称\ textit {ansatz},使用两种不同的方法准确地求解了字段方程,以获取NED Lagrangian,以获取相同的解决方案$ - $ $ $ NED带电的Ads Black Black holes in $ 4D $ EGB GREVITY中保留了几种已知解决方案。由于NED电荷校正后的EGB黑洞,热力学量也会被修改,并且熵不遵守通常的区域定律。我们根据地平线半径计算热容量和Helmholtz自由能,以研究黑洞的局部和全局热力学稳定性。我们观察到较小的热有利黑洞和热广告空间之间的次要鹰页面过渡。我们的结果表明,Hawking蒸发的行为突然停止在较短的半径状态下,因此黑洞确实具有随着温度消失的热力学稳定残留物。

Einstein-Gauss-Bonnet (EGB) gravity is an outcome of quadratic curvature corrections to the Einstein-Hilbert gravity action in the form of a Gauss-Bonnet (GB) term in $ D > 4$ dimensions and EGB gravity is topologically invariant in $4D$. Recently several ways have been proposed for regularizing, a $ D \to 4 $ limit of EGB, for nontrivial gravitational dynamics in $ 4D $. Motivated by the importance of anti-de Sitter gravity/conformal field theory correspondence (AdS/CFT), we analyze black holes with AdS asymptotic to regularized $4D$ EGB gravity coupled to the nonlinear electrodynamics (NED) field. For a static spherically symmetric \textit{ansatz} the field equations are solved exactly, using two different approaches, for a NED Lagrangian to obtain an identical solution$-$namely NED charged AdS black holes in $4D$ EGB gravity which retains several known solutions. Owing to the NED charge corrected EGB black holes, the thermodynamic quantities are also modified, and the entropy does not obey the usual area law. We calculate the heat capacity and Helmholtz free energy, in terms of horizon radii, to investigate both local and global thermodynamic stability of black holes. We observe a secondary Hawking-Page transition between the smaller thermally favoured black hole and thermal AdS space. Our results show that the behaviour of Hawking's evaporation abruptly halts at shorter radii regime such that the black holes do have a thermodynamically stable remnant with vanishing temperature.

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