Bound orbit domains in the phase space of the Kerr geometry
arXiv:2207.05594 · doi:10.1142/9789811258251_0116
Abstract
We derive the conditions for a non-equatorial eccentric bound orbit to exist around a Kerr black hole in two-parameter spaces: the energy, angular momentum of the test particle, spin of the black hole, and Carter's constant space (, , , ), and eccentricity, inverse-latus rectum space (, , , ). These conditions distribute various kinds of bound orbits in different regions of the (, ) and (, ) planes, depending on which pair of roots of the effective potential forms a bound orbit. We provide a prescription to select these parameters for bound orbits, which are useful inputs to study bound trajectory evolution in various astrophysical applications like simulations of gravitational wave emission from extreme-mass ratio inspirals, relativistic precession around black holes, and the study of gyroscope precession as a test of general relativity.
7 pages, 2 figures, Conference: Proceedings of the MG15 Meeting on General Relativity