English

Black Brane/Bose Gase Duality and Third Law of Thermodynamics

High Energy Physics - Theory 2024-11-05 v1

Abstract

In the thermodynamics of black holes in asymptotically flat space, the third law of thermodynamics is violated, and entropy cannot be consistently modeled through conventional statistical mechanics. Notably, the third law of thermodynamics is violated for the Schwarzschild black hole, and its entropy can only be described using an unconventional model, such as a Bose gas in negative dimensions. In contrast, for certain black brane solutions such as Poincare AdS black branes, Lifshitz black branes, and anisotropic Lifshitz-type black branes, the third law is preserved, with entropy vanishing as temperature approaches zero. In this paper, we extend the previously established duality between black hole and Bose gas thermodynamics to black branes. Specifically, the Poincare black brane in DD spacetime dimensions corresponds to a non-relativistic Bose gas in 2(D2)2(D-2) spatial dimensions. Furthermore, the duality between Lifshitz branes and Bose gases relates a Lifshitz brane with exponent α\alpha in DD-dimensional spacetime to a Bose gas of quasi-particles with energy kαk^\alpha in D2D-2 spatial dimensions.

Keywords

Cite

@article{arxiv.2411.01778,
  title  = {Black Brane/Bose Gase Duality and Third Law of Thermodynamics},
  author = {Irina Aref'eva and Daniil Stepanenko and Igor Volovich},
  journal= {arXiv preprint arXiv:2411.01778},
  year   = {2024}
}

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14 pages