Universal scalarization in topological AdS black holes

Fuente: arXiv
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Autori principali: Zhao, Zi-Qiang, Nie, Zhang-Yu, Wei, Shao-Wen, Zhang, Jing-Fei, Zhang, Xin
Natura: Preprint
Pubblicazione: 2025
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author Zhao, Zi-Qiang
Nie, Zhang-Yu
Wei, Shao-Wen
Zhang, Jing-Fei
Zhang, Xin
author_facet Zhao, Zi-Qiang
Nie, Zhang-Yu
Wei, Shao-Wen
Zhang, Jing-Fei
Zhang, Xin
contents We investigate the universal behavior of black hole scalarization induced by a charged scalar field in the extended phase space of the asymptotic AdS spacetime with three distinct horizon topologies. The results indicate that in all the three cases, the charged black hole spacetime undergoes scalarization at low temperatures. Notably, the spherical topology is unique in that its domain of scalarization theoretically extends to much higher temperatures under low pressure in the extended phase space. Moreover, the scalarization process in the spherical case exhibits complex phase transition behaviors without additional non-linear terms, which are similar to those in the planar and hyperbolic topologies with the assistance of non-linear terms. With increasing pressure in the extended phase space, the condensate of the scalarization in all three cases undergoes a transition from the first-order style to a cave-of-wind style. This study provides deeper insight into the zeroth-order phase transition during black hole scalarization and reveals the complete phase structure of black holes in the extended phase space.
format Preprint
id arxiv_https___arxiv_org_abs_2511_18074
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Universal scalarization in topological AdS black holes
Zhao, Zi-Qiang
Nie, Zhang-Yu
Wei, Shao-Wen
Zhang, Jing-Fei
Zhang, Xin
General Relativity and Quantum Cosmology
High Energy Physics - Phenomenology
High Energy Physics - Theory
We investigate the universal behavior of black hole scalarization induced by a charged scalar field in the extended phase space of the asymptotic AdS spacetime with three distinct horizon topologies. The results indicate that in all the three cases, the charged black hole spacetime undergoes scalarization at low temperatures. Notably, the spherical topology is unique in that its domain of scalarization theoretically extends to much higher temperatures under low pressure in the extended phase space. Moreover, the scalarization process in the spherical case exhibits complex phase transition behaviors without additional non-linear terms, which are similar to those in the planar and hyperbolic topologies with the assistance of non-linear terms. With increasing pressure in the extended phase space, the condensate of the scalarization in all three cases undergoes a transition from the first-order style to a cave-of-wind style. This study provides deeper insight into the zeroth-order phase transition during black hole scalarization and reveals the complete phase structure of black holes in the extended phase space.
title Universal scalarization in topological AdS black holes
topic General Relativity and Quantum Cosmology
High Energy Physics - Phenomenology
High Energy Physics - Theory
url https://arxiv.org/abs/2511.18074