English

Bardeen Black Holes in the Regularized $4D$ Einstein--Gauss--Bonnet Gravity

General Relativity and Quantum Cosmology 2022-04-19 v3

Abstract

We obtain exact Bardeen black holes to the regularized 4D4D Einstein--Gauss--Bonnet (EGB) gravity minimally coupled with the nonlinear electrodynamics (NED). In turn, we analyze the horizon structure to determine the effect of GB parameter α\alpha on the minimum cutoff values of mass, M0M_0, and magnetic monopole charge, g0g_0, for the existence of a black hole horizon. We obtain an exact expression for thermodynamic quantities, namely, Hawking temperature T+T_+, entropy S+S_+, Helmholtz free energy F+F_+, and specific heat C+C_+ associated with the black hole horizon, and they show significant deviations from the 4D4D EGB case owing to NED. Interestingly, there exists a critical value of horizon radius, r+cr_+^{c}, corresponding to the local maximum of Hawking temperature, at which heat capacity diverges, confirming the second-order phase transition. A discussion on the black holes of alternate regularized 4D4D EGB gravity belonging to the scalar-tensor theory is appended.

Keywords

Cite

@article{arxiv.2003.13104,
  title  = {Bardeen Black Holes in the Regularized $4D$ Einstein--Gauss--Bonnet Gravity},
  author = {Arun Kumar and Rahul Kumar Walia and Sushant G. Ghosh},
  journal= {arXiv preprint arXiv:2003.13104},
  year   = {2022}
}

Comments

15 pages and 4 figures. This was an invited manuscript published in the special issue "Dark Matter and Dark Energy: Particle Physics, Cosmology, and Experimental Searches"