On the instability of ultracompact horizonless spacetimes
arXiv:2211.16526 · doi:10.1103/PhysRevD.107.044035
Abstract
Motivated by recent results reporting the instability of horizonless objects with stable light rings, we revisit the linearized stability of such structures. In particular, we consider an exterior Kerr spacetime truncated at a surface where Dirichlet conditions on a massless scalar are imposed.This spacetime has ergoregions and light rings when the surface is placed sufficiently deep in the gravitational potential. We establish that the spacetime is linearly, mode-unstable when it is sufficiently compact, in a mechanism associated with the ergoregion. In particular, such instability has associated zero-modes. At large multipole number the critical surface location for zero modes to exist is precisely the location of the ergosurface along the equator. We show that such modes don't exist when the surface is outside the ergoregion, and that any putative linear instability mechanism acts on timescales , where is the black hole mass. Our results indicate therefore that at least certain classes of objects are linearly stable in the absence of ergoregions, even if rotation and light rings are present.
13 pages, 12 figures, substantial improvements and clarifications. Results remain unchanged: this work shows that a class of compact object models are linearly stable when light rings are present but ergoregions are absent. Version to appear in Physical Review D
References in corpus (11)
- Light ring stability in ultra-compact objects
- Light rings as observational evidence for event horizons: long-lived modes, ergoregions and nonlinear instabilities of ultracompact objects
- Ergoregion instability of ultra-compact astrophysical objects
- Mining information from binary black hole mergers: a comparison of estimation methods for complex exponentials in noise
- Gravitational perturbations of the Kerr geometry: High-accuracy study
- On the ergoregion instability in rotating gravastars
- A geometric framework for black hole perturbations
- Light rings of stationary spacetimes
- Instability of hyper-compact Kerr-like objects
- Ergoregion instability: The hydrodynamic vortex
- Ultra-spinning exotic compact objects supporting static massless scalar field configurations
Cited by in corpus (14)
- Pseudospectrum of horizonless compact objects: a bootstrap instability mechanism
- Perturbing the perturbed: Stability of quasinormal modes in presence of a positive cosmological constant
- Galactic wormholes: Geometry, stability, and echoes
- Black-hole spectroscopy: quasinormal modes, ringdown stability and the pseudospectrum
- Quasinormal modes of slowly-spinning horizonless compact objects
- Perturbative and non-linear analyses of gravitational turbulence in spacetimes with stable light rings
- Assessing the stability of ultracompact spinning boson stars with nonlinear evolutions
- Circular light orbits of a general, static, and spherical symmetrical wormhole with symmetry
- Superradiant phononic emission from the analog spin ergoregion in a two-component Bose-Einstein condensate
- Relation between circular photon orbits and the stability of wormholes with the thin shell of a barotropic fluid
- Spectral instability of horizonless compact objects within astrophysical environments
- Ergoregion instability in bosonic stars: scalar mode structure, universality, and weakly nonlinear effects
- Gravitational lensing inside and outside of a marginally unstable photon sphere in a general, static, spherically symmetric, and asymptotically-flat spacetime in strong deflection limits
- Energy bounds and ergoregion instability in Einstein-Maxwell-Scalar field models