Synchronous frequencies of extremal Kerr black holes: resonances, scattering and stability
arXiv:1706.01112 · doi:10.1103/PhysRevD.96.044034
Abstract
The characteristic damping times of the natural oscillations of a Kerr black hole become arbitrarily large as the extremal limit is approached. This behavior is associated with the so-called zero damped modes (ZDMs), and suggests that extremal black holes are characterized by quasinormal modes whose frequencies are purely real. Since these frequencies correspond to oscillations whose angular phase velocity matches the horizon angular velocity of the black hole, they are sometimes called "synchronous frequencies". Several authors have studied the ZDMs for near-extremal black holes. Recently, their correspondence to branch points of the Green's function of the wave equation was linked to the Aretakis instability of extremal black holes. Here we investigate the existence of ZDMs for extremal black holes, showing that these real-axis resonances of the field are unphysical as natural black hole oscillations: the corresponding frequency is always associated with a scattering mode. By analyzing the behavior of these modes near the event horizon we obtain new insight into the transition to extremality, including a simple way to understand the Aretakis instability.
v2: 10 pages, 2 figures, 1 table. Matches published version
References in corpus (11)
- Kerr-Newman scalar clouds
- Slow relaxation of rapidly rotating black holes
- Gravitational perturbations of the Kerr geometry: High-accuracy study
- Gravitational instability of an extreme Kerr black hole
- Branching of quasinormal modes for nearly extremal Kerr black holes
- Horizon Instability of Extremal Kerr Black Holes: Nonaxisymmetric Modes and Enhanced Growth Rate
- Relaxation dynamics of charged gravitational collapse
- Quasinormal modes of charged fields around a Reissner-Nordström black hole
- Transient Instability of Rapidly Rotating Black Holes
- Marginal scalar and Proca clouds around Reissner-Nordström black holes
- Scalar Fields in Black Hole Spacetimes
Cited by in corpus (17)
- Quasinormal modes and Strong Cosmic Censorship
- Post-Kerr black hole spectroscopy
- Black holes with synchronised Proca hair: linear clouds and fundamental non-linear solutions
- Mode stability for the Teukolsky equation on extremal and subextremal Kerr spacetimes
- Quasinormal modes, quasibound states, scalar clouds, and superradiant instabilities of a Kerr-like black hole
- Spectroscopy of Extremal (and Near-Extremal) Kerr Black Holes
- Teukolsky master equation and Painlevé transcendents: numerics and extremal limit
- Instability and no-hair paradigm in d-dimensional charged-AdS black holes
- Scalar/Dirac perturbations of the Reissner-Nordström black hole and Painlevé transcendents
- Exceptional point and hysteresis in perturbations of Kerr black holes
- Massive scalar perturbations in Kerr Black Holes: near extremal analysis
- Black holes, stationary clouds and magnetic fields
- No hair theorem for spherically symmetric regular compact stars with Dirichlet boundary conditions
- No scalar condensations outside reflecting stars with coupling terms from Ginzburg-Landau models
- A no-go theorem for scalar fields with couplings from Ginzburg-Landau models
- Ergodic Hysteresis of the Kerr black hole spectrum
- Analytical investigations on non-minimally coupled scalar fields outside neutral reflecting shells