Cosmological constant as confining U(1) charge in two-dimensional dilaton gravity
High Energy Physics - Theory
2014-08-20 v1 General Relativity and Quantum Cosmology
Abstract
The cosmological constant is treated as a thermodynamical parameter in the framework of two-dimensional dilaton gravity. We find that the cosmological constant behaves as a U(1) charge with a confining potential, and that such potentials require a novel Born-Infeld boundary term in the action. The free energy and other thermodynamical quantities of interest are derived, from first principles, in a way that is essentially model-independent. We discover that there is always a Schottky anomaly in the specific heat and explain its physical origin. Finally, we apply these results to specific examples, like Anti-de Sitter-Schwarzschild-Tangherlini black holes, Banados-Teitelboim-Zanelli black holes and the Jackiw-Teitelboim model.
Cite
@article{arxiv.1406.7007,
title = {Cosmological constant as confining U(1) charge in two-dimensional dilaton gravity},
author = {Daniel Grumiller and Robert McNees and Jakob Salzer},
journal= {arXiv preprint arXiv:1406.7007},
year = {2014}
}
Comments
15pp