Anisotropic Schrödinger black holes with hyperscaling-violation

Fuente: arXiv
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Auteurs principaux: Herrera-Aguilar, Alfredo, Herrera-Mendoza, Jhony A., Higuita-Borja, Daniel F., Méndez-Zavaleta, Julio A., Romero-Figueroa, Carlos Eduardo
Format: Preprint
Publié: 2021
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author Herrera-Aguilar, Alfredo
Herrera-Mendoza, Jhony A.
Higuita-Borja, Daniel F.
Méndez-Zavaleta, Julio A.
Romero-Figueroa, Carlos Eduardo
author_facet Herrera-Aguilar, Alfredo
Herrera-Mendoza, Jhony A.
Higuita-Borja, Daniel F.
Méndez-Zavaleta, Julio A.
Romero-Figueroa, Carlos Eduardo
contents We investigate novel exact solutions to an Einstein-Maxwell theory non-minimally coupled to a self-interacting dilaton-like scalar. Extending the results of arXiv: 2012.13412 and 2110.04445, we report three families of exact configurations over a non-relativistic Schrödinger background with both, arbitrary dynamical critical exponent $z$ and hyperscaling violating parameter $θ$. Concretely, we provide field configurations with hyperscaling violation which are asymptotically Schrödinger spaces. Our solutions correspond to three kinds: a zero-temperature background, a naked singularity and, more interestingly, a family of black holes. To the later, we construct the corresponding Carter-Penrose diagram with a view to understand their causal structure given the non-standard background. We show that a non-trivial hyperscaling violation parameter $θ$ is necessary in order to support a real non-constant dilaton field in the configuration. We explore how the relation between the hyperscaling violation parameter and the critical dynamical exponent determine, in combination with the spacetime dimension, the kinematic aspects of the fields. We provide a thorough study of the thermodynamics including the quasi-local computation of charges, the verification of the first law and arguments concerning the stability. Lastly, we explore the effects in the thermodynamics from varying the rich parameter space. We pay special attention in comparing the qualitative behavior of the thermodynamics scalar-free solutions and the ones with a nontrivial dialton.
format Preprint
id arxiv_https___arxiv_org_abs_2112_12805
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Anisotropic Schrödinger black holes with hyperscaling-violation
Herrera-Aguilar, Alfredo
Herrera-Mendoza, Jhony A.
Higuita-Borja, Daniel F.
Méndez-Zavaleta, Julio A.
Romero-Figueroa, Carlos Eduardo
High Energy Physics - Theory
We investigate novel exact solutions to an Einstein-Maxwell theory non-minimally coupled to a self-interacting dilaton-like scalar. Extending the results of arXiv: 2012.13412 and 2110.04445, we report three families of exact configurations over a non-relativistic Schrödinger background with both, arbitrary dynamical critical exponent $z$ and hyperscaling violating parameter $θ$. Concretely, we provide field configurations with hyperscaling violation which are asymptotically Schrödinger spaces. Our solutions correspond to three kinds: a zero-temperature background, a naked singularity and, more interestingly, a family of black holes. To the later, we construct the corresponding Carter-Penrose diagram with a view to understand their causal structure given the non-standard background. We show that a non-trivial hyperscaling violation parameter $θ$ is necessary in order to support a real non-constant dilaton field in the configuration. We explore how the relation between the hyperscaling violation parameter and the critical dynamical exponent determine, in combination with the spacetime dimension, the kinematic aspects of the fields. We provide a thorough study of the thermodynamics including the quasi-local computation of charges, the verification of the first law and arguments concerning the stability. Lastly, we explore the effects in the thermodynamics from varying the rich parameter space. We pay special attention in comparing the qualitative behavior of the thermodynamics scalar-free solutions and the ones with a nontrivial dialton.
title Anisotropic Schrödinger black holes with hyperscaling-violation
topic High Energy Physics - Theory
url https://arxiv.org/abs/2112.12805