Nonlinear evolution of the ergoregion instability: Turbulence, bursts of radiation, and black hole formation
gr-qc, astro-ph.HE, hep-ph, hep-th
Submitted: 2025-12-11
Updated: 2026-09-08
Comments: 10 pages, 9 figures, updated to match published version
Journal ref: Phys. Rev. D 114, 064022 (2026)
DOI: 10.1103/2jnw-68dm
License: http://creativecommons.org/licenses/by/4.0/
The gist: Spacetimes with an ergoregion that is not connected to a horizon are linearly unstable.
Terminology
Abstract
Spacetimes with an ergoregion that is not connected to a horizon are linearly unstable. While the linear regime has been studied in a number of settings, little is known about the nonlinear evolution of this ergoregion instability. Here, we investigate this by numerically evolving the unstable growth of a massless vector field in a rapidly spinning boson star in full general relativity. We find that the backreaction of the instability causes the star to become more gravitationally bound, accelerating the growth, and eventually leading to black hole formation. During the nonlinear growth phase, small scale features develop in the unstable mode and emitted radiation as nonlinear gravitational interactions mediate a direct turbulent cascade. The gravitational wave signal exhibits bursts, akin to so-called gravitational wave echoes, with increasing amplitude towards black hole formation.
Sources
- The w-mode instability of ultracompact relativistic stars
- Ergoregion instability of ultra-compact astrophysical objects
- On the ergoregion instability in rotating gravastars
- Instability of hyper-compact Kerr-like objects
- Exotic Compact Objects and How to Quench their Ergoregion Instability
- Ergoregion instability of exotic compact objects: electromagnetic and gravitational perturbations and the role of absorption
- Ergoregion instability in bosonic stars: scalar mode structure, universality, and weakly nonlinear effects
- Instability of non-supersymmetric smooth geometries
- Gravitational instabilities of superspinars
- Ergoregion instability and echoes for braneworld black holes: Scalar, electromagnetic and gravitational perturbations
- Ergoregion instability: The hydrodynamic vortex
- Onset of superradiant instabilities in the hydrodynamic vortex model
- The Penrose process, superradiance and ergoregion instabilities
- A proof of Friedman's ergosphere instability for scalar waves
- Weakly turbulent saturation of the nonlinear scalar ergoregion instability
- Testing the nature of dark compact objects: a status report
- Towards a Non-singular Paradigm of Black Hole Physics
- Black hole mimickers: from theory to observation
- The stochastic gravitational-wave background in the absence of horizons
- Stochastic gravitational-wave background from spin loss of black holes
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