English

Phase Transitions of Quintessential AdS Black Holes in M-theory/Superstring Inspired Models

High Energy Physics - Theory 2021-04-21 v1 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology

Abstract

We study dd-dimensional AdSAdS black holes surrounded by Dark Energy (DE), embedded in DD-dimensional M-theory/superstring inspired models having AdSd×Sd+kAdS_d \times \mathbb{S}^{d+k} space-time with D=2d+kD=2d+k. We focus on the thermodynamic Hawking-Page phase transitions of quintessential DE black hole solutions, whose microscopical origin is linked to NN coincident (d2)(d-2)-branes supposed to live in such (2d+k)(2d+k)-dimensional models. Interpreting the cosmological constant as the number of colors Nd12\propto N^{\frac{d-1}{2}}, we calculate various thermodynamical quantities in terms of brane number, entropy and DE contributions. Computing the chemical potential conjugated to the number of colors in the absence of DE, we show that a generic black hole is more stable for a larger number of branes for lower dimensions dd.In the presence of DE, we find that the DE state parameter ωq\omega_q should take particular values, for (D,d,k)(D,d,k) models, providing a non trivial phase transition structure.

Keywords

Cite

@article{arxiv.2004.10647,
  title  = {Phase Transitions of Quintessential AdS Black Holes in M-theory/Superstring Inspired Models},
  author = {A. Belhaj and A. El Balali and W. El Hadri and Y. Hassouni and E. Torrente-Lujan},
  journal= {arXiv preprint arXiv:2004.10647},
  year   = {2021}
}