A Note on Circular Geodesics and Phase Transitions of Black Holes
Abstract
The circular motion of charged test particles in the gravitational field of a Reissner-Nordstr\"{o}m black hole in Anti de Sitter space-time is investigated, using a set of independent parameters, such as charge Q, mass M and cosmological constant of the space-time, and charge to mass ratio of the test particles. Classification of different spatial regions where circular motion is allowed, is presented, showing in particular, the presence of orbits at special limiting values, and . Thermodynamically, these values are known to occur when the black hole is on the verge of a second order phase transition, there by, giving an interesting connection between thermodynamics and geodesics of black holes. We also comment on the possibility of such a connection for black holes in flat spacetime in a box.
Keywords
Cite
@article{arxiv.1805.05088,
title = {A Note on Circular Geodesics and Phase Transitions of Black Holes},
author = {Chandrasekhar Bhamidipati and Shrohan Mohapatra},
journal= {arXiv preprint arXiv:1805.05088},
year = {2019}
}
Comments
v2:14 pages, 1 figure. Major changes in text and equations; added results; key results unchanged; v3: revised version, to appear in Physics Letters B