arXiv · 2608.22292
Thermodynamics of Genuine Kerr-Bertotti-Robinson Black Holes
Abstract
We propose a thermodynamic description of the genuine Kerr-Bertotti-Robinson (Kerr-BR) black hole spacetimes. Contrary to previous studies, such solutions no longer have electric charge. Consequently, the thermodynamics is governed by simple relations. Namely, upon introducing a suitable normalization factor for the timelike Killing vector, these spacetimes are characterized by the standard Hawking temperature, Bekenstein's entropy, Komar mass and angular momentum, and horizon angular velocity. The corresponding mass is shown to obey the standard Christodoulou-Ruffini formula, along with the standard first law and Smarr relations. In fact, by a proper rescaling of coordinates and solution parameters, and up to a non-trivial parameter space constraint, we formally recover the thermodynamic quantities of the vacuum Kerr solution. This is used to bring the genuine Kerr-BR spacetime into a Kerr-like form.
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David Kubiznak, Hryhorii Ovcharenko, Jiri Podolsky. 2026-08-23. Thermodynamics of Genuine Kerr-Bertotti-Robinson Black Holes. https://arxiv.org/abs/2608.22292
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