English

Fermion Clouds Around $z=0$ Lifshitz Black Holes

High Energy Physics - Theory 2018-12-27 v1

Abstract

The Dirac equation is solved in the z=0z=0 Lifshitz black hole (Z0Z0LBH) spacetime. The set of equations representing the Dirac equation in the Newman-Penrose (NP) formalism is decoupled into a radial set and an angular set. The separation constant is obtained with the aid of the spin weighted spheroidal harmonics. The radial set of equations, which is independent of mass, is reduced to Zerilli equations (ZEs)\ with their associated potentials. In the near horizon (NH) region, these equations solved in terms of the Bessel functions of the first and second kinds arising from the fermionic perturbation on the background geometry. For computing the BQNMs instead of the ordinary quasinormal modes (QNMs), we first impose the purely ingoing wave condition at the event horizon. And then, Dirichlet boundary condition (DBC) and Newmann boundary condition (NBC) are applied in order to get the resonance conditions. For solving the resonance conditions we follow an iteration method. Finally, Maggiore's method (MM) is employed to derive the entropy/area spectra of the Z0Z0LBH which are shown to be equidistant.

Keywords

Cite

@article{arxiv.1812.09711,
  title  = {Fermion Clouds Around $z=0$ Lifshitz Black Holes},
  author = {Gülnihal Tokgöz and İzzet Sakallı},
  journal= {arXiv preprint arXiv:1812.09711},
  year   = {2018}
}