论文标题
相位过渡结构和中央电荷关键的普遍性质的破坏,在出生的核心$ ADS $ BLACK HOL中
Phase transition structure and breaking of universal nature of central charge criticality in a Born-Infeld $AdS$ black hole
论文作者
论文摘要
在本文中,我们考虑了使用双边界场理论中的输入来考虑出生的核算$ ads $黑洞的热力学。在这里,我们与批量生产的宇宙常数$λ$和牛顿的重力常数$ g $一起变化了。最近已经观察到了在带电黑洞的扩展黑洞热力学中中心电荷的一种新颖的通用临界行为(发生在边界共形场理论中),最近已观察到\ cite {mann1},我们已经将这项研究扩展到了出生的Infeld $ ADS $ BLACK $黑洞。因此,出生的污染参数具有反相位的尺寸,因此,当以混合形式的批量热力学定律中考虑,其中包括边界保形场理论的中心电荷时,它会修改热力学体积和化学电位(分别与压力和中心电荷结合)。我们观察到,由于在此分析中包含了出生的非线性,因此在\ cite {mann1}中观察到的中心电荷的临界价值的普遍性会破裂。我们还观察到由于中央电荷和出生的污染参数的变化而导致黑洞的自由能的有趣行为。在我们的分析中还观察到,对于出生式参数的足够小值(该参数的小值具有更突出的非线性效应),存在温度的临界值以下是没有黑洞的临界值。
In this paper we have considered the thermodynamics of a Born-Infeld $AdS$ black hole using inputs from the dual boundary field theory. Here, we have varied the cosmological constant $Λ$ and the Newton's gravitational constant $G$ along with the Born-Infeld parameter $b$ in the bulk. A novel universal critical behaviour of the central charge (occurring in the boundary conformal field theory) in extended black hole thermodynamics for charged black holes has been recently observed \cite{mann1}, and we have extended this study to Born-Infeld $AdS$ black holes. The Born-Infeld parameter has the dimension of inverse length, therefore, when considered in the first law of thermodynamics of the bulk in the mixed form which includes the central charge of the boundary conformal field theory, it modifies the thermodynamic volume and the chemical potential (which are conjugate to pressure and central charge respectively). We observe that due to this inclusion of the Born-Infeld non-linearity in this analysis, the universal nature of the critical value of the central charge observed in \cite{mann1} breaks down. We also observe an interesting behaviour of the free energy of the black hole with Hawking temperature due to the variations in both the central charge and the Born-Infeld parameter. It is also observed in our analysis that for a sufficiently small value of the Born-Infeld parameter (small value of this parameter has more prominent non-linear effects), there exists a critical value of the temperature below which no black hole can exist.