Shielding of Penrose superradiance in optical black holes
arXiv:2303.14418 · doi:10.1140/epjc/s10052-023-11389-y
Abstract
We investigate the effect of superradiance shielding for the analogue rotating black holes simulated by optical vortices by calculating the radial motion of massless particles in such spacetime background. We add the conditions and to judge the classically forbidden region of superradiance. It is found that the superradiance forbidden region exists near the static limit inside the ergosphere,which will limit the classical Penrose process for the particles with some specific energies and angular momenta. Once these particles satisfying the superradiance conditions aremeasured at the outside of the ergosphere, this shows that the Penrose process can be quantum.
References in corpus (9)
- Fiber-optical analogue of the event horizon
- Measurement of stimulated Hawking emission in an analogue system
- Observation of stationary spontaneous Hawking radiation and the time evolution of an analogue black hole
- Acoustic black holes in a two-dimensional "photon-fluid"
- Penrose Superradiance in Nonlinear Optics
- Acoustic black-hole bombs and scalar clouds in a photon-fluid model
- Ramp-up of Hawking radiation in Bose-Einstein condensate analogue black holes
- Rotational superradiance with Bogoliubov dispersion
- Evaporation Screening, Scattering, and Quantum Tunneling Near the Horizons of Schwarzschild and Reissner--Nordström Black Holes