Dynamics of scalar fields in the background of rotating black holes
- 15 October 1996
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 54 (8), 4728-4734
- https://doi.org/10.1103/physrevd.54.4728
Abstract
A numerical study of the evolution of a massless scalar field in the background of rotating black holes is presented. First, solutions to the wave equation are obtained for slowly rotating black holes. In this approximation, the background geometry is treated as a perturbed Schwarzschild spacetime with the angular momentum per unit mass playing the role of a perturbative parameter. To first order in the angular momentum of the black hole, the scalar wave equation yields two coupled one-dimensional evolution equations. In this approximation, the late time dynamics of a massless scalar field exhibit the same power-law behavior as in the case of a Schwarzschild background. Solutions to the wave equation are also obtained for rapidly rotating black holes. In this case, owing to higher order terms in the angular momentum, the wave equation does not admit complete separation of variables and yields a two-dimensional evolution equation. The study shows that, depending on initial conditions, the late-time dynamics of a massless scalar field is dominated by the lowest-allowed mode with respect to for a fixed value of .
Keywords
All Related Versions
This publication has 10 references indexed in Scilit:
- Wave propagation in gravitational systems: Late time behaviorPhysical Review D, 1995
- Late-Time Tail of Wave Propagation on Curved SpacetimePhysical Review Letters, 1995
- Late-time behavior of stellar collapse and explosions. I. Linearized perturbationsPhysical Review D, 1994
- Late-time behavior of stellar collapse and explosions. II. Nonlinear evolutionPhysical Review D, 1994
- Gravitational radiation from a particle in circular orbit around a black hole. III. Stability of circular orbits under radiation reactionPhysical Review D, 1993
- Asymptotics of gravitational collapse of scalar wavesJournal of Mathematical Physics, 1992
- Radiation from collapsing relativistic stars. I - Linearized odd-parity radiationThe Astrophysical Journal, 1978
- Perturbations of a Rotating Black Hole. I. Fundamental Equations for Gravitational, Electromagnetic, and Neutrino-Field PerturbationsThe Astrophysical Journal, 1973
- Nonspherical Perturbations of Relativistic Gravitational Collapse. I. Scalar and Gravitational PerturbationsPhysical Review D, 1972
- Solution of the Scalar Wave Equation in a Kerr Background by Separation of VariablesPhysical Review D, 1972