Equatorial and polar quasinormal modes and quasiperiodic oscillations of quantum deformed Kerr black hole
arXiv:2203.14969 · doi:10.3390/universe8040210
Abstract
In this paper we focus on the relation between quasinormal modes (QNMs) and a rotating black hole shadows. As a specific example, we consider the quantum deformed Kerr black hole obtained via Newman--Janis--Azreg-A\"ınou algorithm. In particular, using the geometric-optics correspondence between the parameters of a QNMs and the conserved quantities along geodesics, we show that, in the eikonal limit, the real part of QNMs is related to the Keplerian frequency for equatorial orbits. To this end, we explore the typical shadow radius for the viewing angles, , and obtained an interesting relation in the case of viewing angle (or equivalently ). Furthermore we have computed the corresponding equatorial and polar modes and the thermodynamical stability of the quantum deformed Kerr black hole. We also investigate other astrophysical applications such as the quasiperiodic oscillations and the motion of S2 star to constrain the quantum deforming parameter.
14 pages, published in Universe
References in corpus (8)
- An Update on Monitoring Stellar Orbits in the Galactic Center
- Generating rotating regular black hole solutions without complexification
- Quasinormal-mode spectrum of Kerr black holes and its geometric interpretation
- Connection between black-hole quasinormal modes and lensing in the strong deflection limit
- Black hole shadow in a general rotating spacetime obtained through Newman-Janis algorithm
- The Quasinormal Mode Spectrum of a Kerr Black Hole in the Eikonal Limit
- The geodesic motion of S2 and G2 as a test of the fermionic dark matter nature of our galactic core
- Relating Black Hole Shadow to Quasinormal Modes for Rotating Black Holes