论文标题

$ ADS $ BLACK BONNET GREATITY中,中央电荷关键的普遍性打破了中央电荷的关键性

Breaking of universal nature of central charge criticality in $AdS$ black holes in Gauss-Bonnet Gravity

论文作者

Kumar, Neeraj, Sen, Soham, Gangopadhyay, Sunandan

论文摘要

在本文中,我们研究了D维$ ADS $ Spacetime中高斯黑洞的热力学。在这里,宇宙学常数($λ$),牛顿的重力常数($ g $)和高斯 - 骨网参数($α$)在批量上有所不同,考虑到中央电荷($ c $)($ c $)($ c $)($ c $)(双重边界完整理论)及其混合的一项法律,并使用其配合的可变变量,利用了仪表量学的态度。在\ cite {mann1}中观察到了爱因斯坦重力中黑洞相变临界点附近的中央电荷的新型通用性质。我们观察到,当考虑到高斯 - 骨网重力中的黑洞时,这种普遍的性质会破裂。除此之外,根据\ cite {kastori}在\ cite {kastori}中所建议的将高斯 - 骨网的参数视为热力学变量,鉴于第一法与smarr关系之间的一致性导致了改性的热力学体积(共轭到可变的宇宙学常数),从而增加了对范德的狂热的新理解。我们的分析考虑了一般的$ d $维度背景。然后,我们将更大的重点放在分析五个维高斯 - 骨网络时期的相结构上。我们的分析还表明,中央电荷的临界价值的一般普遍性(以四个维度$ ads $ spacetime的形式存在),即使在没有高斯 - 骨网引力的情况下,也有五个维度$ ads $ spacetime的情况下分解。这一发现表明,中央费用的普遍性质可能仅是四个维度$ ads $ spacetime的特殊特征。

In this paper, we have studied the thermodynamics of Gauss-Bonnet black holes in D-dimensional $AdS$ spacetime. Here, the cosmological constant ($Λ$), Newton's gravitational constant ($G$) and the Gauss-Bonnet parameter ($α$) are varied in the bulk, and a mixed first law is rewritten considering central charge ($C$) (of dual boundary conformal theory) and its conjugate variable utilising the gauge-gravity duality. A novel universal nature of central charge near the critical point of black hole phase transition in Einstein's gravity has been observed in \cite{mann1}. We observe that this universal nature breaks when such phase transition is considered for black holes in the Gauss-Bonnet gravity. Apart from this, treating the Gauss-Bonnet parameter as a thermodynamic variable as suggested in \cite{kastori} in light of the consistency between first law and the Smarr relation leads to modified thermodynamic volume (conjugate to variable cosmological constant), adding to a new understanding of the Van der Waals gas like behaviour of the black holes in higher dimensional and higher curvature gravity theories. Our analysis considers a general $D$ dimensional background. We have then imposed a greater focus in the analysis of the phase structure of the five dimensional Gauss-Bonnet spacetime. Our analysis also shows that the general universal nature of the critical value of the central charge (which was present in four dimensional $AdS$ spacetime), breaks down in case of five dimensional $AdS$ spacetime even in the absence of Gauss-Bonnet gravity. This finding indicates the universal nature of the central charge may be a special feature of the four dimensional $AdS$ spacetime only.

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