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Thermodynamics of Gauss–Bonnet–de Sitter black holes
We investigate the thermodynamics of Gauss–Bonnet black holes in asymptotically de Sitter spacetimes embedded in an isothermal cavity, via a Euclidean action approach. We consider both charged and uncharged black holes, working in the extended phase space where the cosmological constant is treated a...
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Published in: | Physical review. D 2020-04, Vol.101 (8), Article 084051 |
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container_title | Physical review. D |
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creator | Haroon, Sumarna Hennigar, Robie A. Mann, Robert B. Simovic, Fil |
description | We investigate the thermodynamics of Gauss–Bonnet black holes in asymptotically de Sitter spacetimes embedded in an isothermal cavity, via a Euclidean action approach. We consider both charged and uncharged black holes, working in the extended phase space where the cosmological constant is treated as a thermodynamic pressure. We examine the phase structure of these black holes through their free energy. In the uncharged case, we find both Hawking-Page and small-to-large black hole phase transitions, whose character depends on the sign of the Gauss-Bonnet coupling. In the charged case, we demonstrate the presence of a swallowtube, signaling a compact region in phase space where a small-to-large black hole transition occurs. |
doi_str_mv | 10.1103/PhysRevD.101.084051 |
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subjects | Black holes Cosmological constant Free energy Phase transitions Solid phases Thermodynamics |
title | Thermodynamics of Gauss–Bonnet–de Sitter black holes |
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