The Penrose process, superradiance and ergoregion instabilities
arXiv:1803.08060 · doi:10.1103/PhysRevD.97.084032
Abstract
Superradiant scattering is a radiation enhancement process that takes place in many contexts, and which has recently found exciting applications in astro and particle physics. In the framework of curved spacetime physics, it has been associated with the classical Penrose process for particles. Superradiance is usually also associated with bosonic fields around geometries with ergoregions and horizons. These notions are in clear tension however: the Penrose process occurs for horizonless geometries, and particles are composed of fermions. Here, we resolve the tension in its different aspects, by showing that (i) superradiance occurs for self-interacting fermions on flat spacetime; (ii) superradiance occurs also for horizonless geometries, where it leads to an ergoregion instability. Ultracompact, horizonless geometries will usually respond with echoes of growing amplitude, until rotational (or electrostatic) energy is extracted from the object; (iii) the Fourier-domain analysis leads to absence of superradiance when horizons are not present. We elucidate why this analysis fails to give meaningful results; (iv) finally, we show that superradiant, ergoregion instabilities have a particle analog of similar growth timescales and which can power the formation of a structure outside a compact, rotating star.
20 pages, accepted for publication in PRD
References in corpus (7)
- Echoes of ECOs: gravitational-wave signatures of exotic compact objects and of quantum corrections at the horizon scale
- Tests for the existence of horizons through gravitational wave echoes
- Gravitational wave searches for ultralight bosons with LIGO and LISA
- Black holes as particle detectors: evolution of superradiant instabilities
- Stochastic and resolvable gravitational waves from ultralight bosons
- A recipe for echoes from exotic compact objects
- Detecting Rotational Superradiance in Fluid Laboratories
Cited by in corpus (32)
- Testing the nature of dark compact objects: a status report
- Black holes, gravitational waves and fundamental physics: a roadmap
- Astrophysical Axion Bounds: The 2024 Edition
- Gravitational wave echoes from black hole area quantization
- Ergoregion instability of exotic compact objects: electromagnetic and gravitational perturbations and the role of absorption
- Analytical model for gravitational-wave echoes from spinning remnants
- Analytical template for gravitational-wave echoes: signal characterization and prospects of detection with current and future interferometers
- Probing microstructure of black hole spacetimes with gravitational wave echoes
- Superradiant instability of charged scalar fields in higher-dimensional Reissner-Nordström-de Sitter black holes
- Black Hole Superradiance in the Presence of Lorentz Symmetry Violation
- Tidal heating of Quantum Black Holes and their imprints on gravitational waves
- Gravitational-wave echoes from numerical-relativity waveforms via space-time construction near merging compact objects
- On the instability of ultracompact horizonless spacetimes
- Understanding superradiant phenomena with synthetic vector potentials in atomic Bose-Einstein condensates
- Probing black holes in a dark matter spike of M87 using quasinormal modes
- Accelerating strangelets via Penrose process in non-BPS fuzzballs
- Superradiance Instabilities of Charged Black Holes in Einstein-Maxwell-scalar Theory
- Mixing of gravitational wave echoes
- Superradiant energy extraction from rotating hairy Horndeski black holes
- Superradiance in Stars: Non-equilibrium approach to damping of fields in stellar media
- Shedding new light on the absence of fermionic superradiance and maximal infalling rate of fermions into a black hole
- Confined Penrose process with charged particles
- Superradiance in a ghost-free scalar theory
- Probing the black holes in a dark matter halo of M87 using gravitational wave echoes
- Superradiant Axionic Black-Hole Clouds as Seeds for Graviton Squeezing
- Squeezed gravitons from superradiant axion fields around rotating black holes
- Extraction of energy from a black hole in Einstein-Maxwell-scalar theory
- Parametric-resonance based phenomenology of gravitating axion configurations
- Superradiance scattering of scalar, electromagnetic, and gravitational fields and thin accretion disk around non-commutating Kerr black hole
- Ergoregion instability in bosonic stars: scalar mode structure, universality, and weakly nonlinear effects
- Exact Regions of Superradiant Instability of Kerr-Newman Black Holes and Massive Scalar Fields
- Nonlinear evolution of the ergoregion instability: Turbulence, bursts of radiation, and black hole formation