Shedding new light on the absence of fermionic superradiance and maximal infalling rate of fermions into a black hole
arXiv:2309.13511 · doi:10.1103/PhysRevD.108.084024
Abstract
Using the complete classification of the bases in the rotating black hole background we separate superradiance from the Hawking effect. We first find that there is spontaneous particle creation for fermions by the potential outside the black hole horizon for the frequencies inside the superradiant regime, i.e. . However, these particles do not enhance the total flux from the black hole. For the superradiance particle to became real, its negative energy counterpart has to be canceled by the positive energy Hawking radiation mode at the horizon. Since due to the Pauli's principle this cancellation must be one-to-one, the superradiance effect cannot add anything to the total black hole flux. For an extremal black hole, the Hawking temperature is zero, horizon is not populated with thermal modes, and fermions can be emitted through the superradiance mechanism. On the other hand, a macroscopic flux of fermions infalling to the black hole is the opposite process of Hawking radiation. A positive energy-infalling particle must cancel out a negative energy thermal mode at the horizon, which leaves a net positive energy mode that crosses the horizon. Since there is finite thermal particle density at the horizon, this implies that there is a maximal fermion infalling rate which is also controlled by the Hawking temperature.
6 pages, 3 figures. arXiv admin note: text overlap with arXiv:2306.17423
References in corpus (14)
- Observation of Incipient Black Holes and the Information Loss Problem
- Minimal conditions for the existence of a Hawking-like flux
- Black Hole Superradiance in the Presence of Lorentz Symmetry Violation
- Gravitational Pair Production and Black Hole Evaporation
- Superradiance in Kerr-like black holes
- Superradiance and Stability of Kerr Black Hole Enclosed by Anisotropic Fluid Matter
- Scattering and absorption of a scalar field impinging on a charged black hole in the Einstein-Maxwell-dilaton theory
- Lifetime of scalar cloud formation around a rotating regular black hole
- Instability and no-hair paradigm in d-dimensional charged-AdS black holes
- Separating the superradiant emission from the Hawking radiation from a rotating black hole
- Black Hole Superradiance in Dynamical Chern-Simons Gravity
- Superradiant energy extraction from rotating hairy Horndeski black holes
- Superradiance of massive scalar particles around rotating regular black holes
- Energy extraction from AdS black holes via superradiance
Cited by in corpus (4)
- Superradiance of rotating black holes surrounded by dark matter
- The spin correlation of fermion pairs created by a Kerr black hole gravitational potential
- Self-gravitating quantum stars with a globally relevant Bohm potential
- Superradiant dark matter production from primordial black holes: Impact of multiple modes and gravitational wave emission