English

Thermodynamics of Gauss-Bonnet black holes revisited

General Relativity and Quantum Cosmology 2008-12-18 v3

Abstract

We investigate the Gauss-Bonnet black hole in five dimensional anti-de Sitter spacetimes (GBAdS). We analyze all thermodynamic quantities of the GBAdS, which is characterized by the Gauss-Bonnet coupling cc and mass MM, comparing with those of the Born-Infeld-AdS (BIAdS), Reissner-Norstr\"om-AdS black holes (RNAdS), Schwarzschild-AdS (SAdS), and BTZ black holes. For c<0c<0 we cannot obtain the black hole with positively definite thermodynamic quantities of mass, temperature, and entropy because the entropy does not satisfy the area-law. On the other hand, for c>0c>0, we find the BIAdS-like black hole, showing that the coupling cc plays the role of pseudo-charge. Importantly, we could not obtain the SAdS in the limits of c0c\to 0, which means that the GBAdS is basically different from the SAdS. In addition, we clarify the connections between thermodynamic and dynamical stability. Finally, we also conjecture that if a black hole is big and thus globally stable, its quasinormal modes may take analytic expressions.

Keywords

Cite

@article{arxiv.0806.4452,
  title  = {Thermodynamics of Gauss-Bonnet black holes revisited},
  author = {Yun Soo Myung and Yong-Wan Kim and Young-Jai Park},
  journal= {arXiv preprint arXiv:0806.4452},
  year   = {2008}
}

Comments

22 pages, 8 figures, version to appear in EPJC