Thermodynamic topology of black holes in f(R) gravity

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-03-05 DOI:10.1093/ptep/ptae035
Bidyut Hazarika, Prabwal Phukon
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Abstract

In this work, we study the thermodynamic topology of a static, a charged static and a charged, rotating black hole in f(R) gravity. For charged static black holes, we work in two different ensembles: fixed charge(q) ensemble and fixed potential(φ) ensemble. For charged, rotating black hole, four different types of ensembles are considered: fixed (q, J), fixed (φ, J), fixed (q, Ω) and fixed (φ, Ω) ensemble, where J and Ω denotes the angular momentum and the angular frequency respectively. Using the generalized off-shell free energy method, where the black holes are treated as topological defects in their thermodynamic spaces, we investigate the local and global topology of these black holes via the computation of winding numbers at these defects. For static black hole we work in three model. We find that the topological charge for a static black hole is always −1 regardless of the values of the thermodynamic parameters and the choice of f(R) model. For a charged static black hole, in the fixed charge ensemble, the topological charge is found to be zero. Contrastingly, in the fixed φ ensemble, the topological charge is found to be −1. For charged static black holes, in both the ensembles, the topological charge is observed to be independent of the thermodynamic parameters. For charged, rotating black hole, in fixed (q, J) ensemble, the topological charge is found to be 1. In (φ, J) ensemble, we find the topological charge to be 1. In case of fixed (q, Ω) ensemble, the topological charge is 1 or 0 depending on the value of the scalar curvature(R). In fixed (Ω, φ) ensemble, the topological charge is −1, 0 or 1 depending on the values of R, Ω and φ. Therefore, we conclude that the thermodynamic topologies of the charged static black hole and charged rotating black hole are influenced by the choice of ensemble. In addition, the thermodynamic topology of the charged rotating black hole also depends on the thermodynamic parameters.
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f(R) 引力下黑洞的热力学拓扑结构
在这项工作中,我们研究了 f(R) 引力下静态黑洞、带电静态黑洞和带电旋转黑洞的热力学拓扑。对于带电静态黑洞,我们采用两种不同的集合:固定电荷(q)集合和固定电势(φ)集合。对于带电旋转黑洞,我们考虑了四种不同的集合:固定(q, J)、固定(φ, J)、固定(q, Ω)和固定(φ, Ω)集合,其中 J 和 Ω 分别表示角动量和角频率。我们使用广义壳外自由能方法,将黑洞视为其热力学空间中的拓扑缺陷,通过计算这些缺陷处的缠绕数来研究这些黑洞的局部和全局拓扑。对于静态黑洞,我们采用了三种模型。我们发现,无论热力学参数的值和 f(R) 模型的选择如何,静态黑洞的拓扑电荷总是-1。对于带电的静态黑洞,在固定电荷集合中,拓扑电荷为零。相反,在固定φ集合中,拓扑电荷为-1。对于带电的静态黑洞,在两种集合中,拓扑电荷都与热力学参数无关。对于带电旋转黑洞,在固定的(q,J)集合中,拓扑电荷为 1。在(φ,J)集合中,我们发现拓扑电荷为 1。在固定(q,Ω)集合中,拓扑电荷为 1 或 0,取决于标量曲率(R)的值。因此,我们得出结论:带电静态黑洞和带电旋转黑洞的热力学拓扑受集合选择的影响。此外,带电旋转黑洞的热力学拓扑也取决于热力学参数。
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CiteScore
7.20
自引率
4.30%
发文量
567
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