paper

Thermodynamic topology of black Holes in f(R) gravity

arXiv:2401.16756 · doi:10.1093/ptep/ptae035

Abstract

In this work, we study the thermodynamic topology of a static, a charged static and a charged, rotating black hole in gravity. For charged static black holes, we work in two different ensembles: fixed charge ensemble and fixed potential ensemble. For charged, rotating black hole, four different types of ensembles are considered: fixed , fixed , fixed and fixed ensemble, where and 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 regardless of the values of the thermodynamic parameters and the choice of model. For a charged static black hole, in the fixed charge ensemble, the topological charge is found to be zero. Contrastingly, in the fixed ensemble, the topological charge is found to be 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 ensemble, the topological charge is found to be In ensemble, we find the topological charge to be In case of fixed ensemble, the topological charge is or depending on the value of the scalar curvature(). In fixed ensemble, the topological charge is or depending on the values of and

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