Maxwell Chern-Simons gravity in 3D: Thermodynamics of cosmological solutions and black holes with torsion

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Hauptverfasser: Avilés, Luis, Concha, Patrick, Matulich, Javier, Rodríguez, Evelyn, Tempo, David
Format: Preprint
Veröffentlicht: 2025
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author Avilés, Luis
Concha, Patrick
Matulich, Javier
Rodríguez, Evelyn
Tempo, David
author_facet Avilés, Luis
Concha, Patrick
Matulich, Javier
Rodríguez, Evelyn
Tempo, David
contents We construct generalized sets of asymptotic conditions for both three-dimensional Maxwell Chern-Simons gravity and a novel extension that incorporates torsion through a deformation of the Maxwell algebra. These boundary conditions include the most general temporal components of the gauge fields that consistently preserve the corresponding asymptotic Maxwell algebras with identical classical central charges, while allowing for the inclusion of chemical potentials conjugate to the conserved charges. We show that both sets of asymptotic configurations admit nontrivial solutions carrying not only mass and angular momentum but also an additional global spin-2 charge. In the torsionless case, the theory admits locally flat cosmological spacetimes, whereas in the presence of torsion, it generalizes to BTZ-like black hole geometries. For each case, the thermodynamic properties are consistently derived in terms of the gauge fields and the topology of the Euclidean manifold, shown to correspond to a solid torus. Furthermore, we obtain a general expression for the entropy, depending on both the horizon area and its spin-2 analogues, which can be written as a reparametrization-invariant integral of the induced spin-2 fields on the spacelike section of the horizon.
format Preprint
id arxiv_https___arxiv_org_abs_2510_25559
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Maxwell Chern-Simons gravity in 3D: Thermodynamics of cosmological solutions and black holes with torsion
Avilés, Luis
Concha, Patrick
Matulich, Javier
Rodríguez, Evelyn
Tempo, David
High Energy Physics - Theory
General Relativity and Quantum Cosmology
We construct generalized sets of asymptotic conditions for both three-dimensional Maxwell Chern-Simons gravity and a novel extension that incorporates torsion through a deformation of the Maxwell algebra. These boundary conditions include the most general temporal components of the gauge fields that consistently preserve the corresponding asymptotic Maxwell algebras with identical classical central charges, while allowing for the inclusion of chemical potentials conjugate to the conserved charges. We show that both sets of asymptotic configurations admit nontrivial solutions carrying not only mass and angular momentum but also an additional global spin-2 charge. In the torsionless case, the theory admits locally flat cosmological spacetimes, whereas in the presence of torsion, it generalizes to BTZ-like black hole geometries. For each case, the thermodynamic properties are consistently derived in terms of the gauge fields and the topology of the Euclidean manifold, shown to correspond to a solid torus. Furthermore, we obtain a general expression for the entropy, depending on both the horizon area and its spin-2 analogues, which can be written as a reparametrization-invariant integral of the induced spin-2 fields on the spacelike section of the horizon.
title Maxwell Chern-Simons gravity in 3D: Thermodynamics of cosmological solutions and black holes with torsion
topic High Energy Physics - Theory
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2510.25559