Novel topological black holes from thermodynamics and deforming horizons
Abstract
Two novel topological black hole exact solutions with unusual shapes of horizons in the simplest holographic axions model, the four-dimensional Einstein-Maxwell-axions theory, are constructed. We draw embedding diagrams in various situations to display unusual shapes of novel black holes. To understand their thermodynamics from the quasi-local aspect, we re-derive the unified first law and the Misner-Sharp mass from the Einstein equations for the spacetime as a warped product . The Ricci scalar of the sub-manifold can be a non-constant. We further improve the thermodynamics method based on the unified first law. Such a method simplifies constructing solutions and hints at generalization to higher dimensions. Moreover, we apply the unified first law to discuss black hole thermodynamics.
Keywords
Cite
@article{arxiv.2301.01709,
title = {Novel topological black holes from thermodynamics and deforming horizons},
author = {Jinbo Yang},
journal= {arXiv preprint arXiv:2301.01709},
year = {2024}
}
Comments
19 pages, 18 figures, Significantly revised: (1) more embedding diagrams for various shapes, specifically including the shape without singularity; (2) content about Kodama vector and global monopole solutions replaced by solving Einstein's equation from given ansatzes; (3) more tractable text to find the unified first law from Einstein's equation