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Phase transitions in D-dimensional Gauss-Bonnet-Born-Infeld AdS black holes

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arxiv 2011.05137 v2 pith:ICCLJ76S submitted 2020-11-09 gr-qc

classification gr-qc
keywords blackphasetransitionanalysisborn-infeldcarriedconstantdimensions
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In this paper, we have investigated the phase transition in black holes when Gauss-Bonnet corrections to the spacetime curvature and Born-Infeld extension in stress-energy tensor of electromagnetic field are considered in a negative cosmological constant background. It is evident that the black hole undergoes a phase transition as the specific heat capacity at constant potential shows discontinuities. Further, the computation of the free energy of the black hole, the Ehrenfest scheme and the Ruppeiner state space geometry analysis are carried out to establish the second order nature of this phase transition. The effect of non-linearity arising from Born-Infeld electrodynamics is also evident from our analysis. Our investigations are done in general D-spacetime dimensions with D > 4, and specific computations have been carried out in D = 5, 6, 7 spacetime dimensions.

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  1. A systematic search for tectonic tremor and low-frequency earthquakes in the Atacama segment of the Chilean subduction zone (24$^\circ$S-31$^\circ$S) turns up empty

    physics.geo-ph 2025-01 conditional novelty 6.0 of 10

    A dense seismic network search in the Atacama segment found no tectonic tremor or low-frequency earthquakes over 3.5 years, constraining their possible rate and size in a region known for slow slip.

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