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The Interconnection of Cosmological Constant and Renyi Entropy in Kalb-Ramond Black Holes : Insights from Thermodynamic Topology

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arxiv 2412.09494 v2 pith:SEMZHQK7 submitted 2024-12-12 gr-qc

classification gr-qc
keywords blackholesrenyicosmologicalconstantflatframeworkstatistical
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This paper seeks to establish a connection between the cosmological constant and Renyi entropy within the framework of Kalb-Raymond(K-R) gravity. Our analysis is supported by evidence showing the equivalence of the thermodynamic topology of K-R AdS black holes in the Gibbs-Boltzmann (GB) statistical framework and K-R flat black holes in the Renyi statistical framework. We begin by exploring the thermodynamic topology of K-R black holes in flat spacetimes, focusing on the topological characteristics and phase transition behavior in both statistical frameworks. We find that K-R flat black holes in Renyi statistics exhibit equivalent global and local topological properties to K-R AdS black holes in GB statistics. This equivalence points to a potential connection between the cosmological constant and the Renyi parameter. We derive an approximate relationship between the Renyi parameter and the cosmological constant, which is consistent with similar findings in the literature from a cosmological perspective.

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  1. Topological Insights into Black Hole Thermodynamics: Non-Extensive Entropy in CFT framework

    gr-qc 2025-01 reject novelty 3.0 of 10

    For Gauss-Bonnet-AdS black holes in CFT thermodynamics, the paper reports that hand-chosen Rényi, Sharma-Mittal, and LQG entropy parameters control whether the topological charge is +1 or 0 and whether the phase trans...

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