Superradiant scattering of massive scalar field due to magnetically charged rotating black hole
arXiv:2408.11410 · doi:10.1016/j.physletb.2025.139392
Abstract
Rotating black holes are well known to amplify the perturbing bosonic fields in certain parameter spaces. This phenomenon is popularly known as superradiance. In addition to rotation in the spacetime, charge plays a crucial role in the amplification process. In the present study, we have considered the spacetime of a magnetically charged rotating black hole emerging from the coupling of nonlinear electromagnetic field configuration to gravity. Due to this black hole spacetime, we have studied the scattering states of a massive scalar field and investigated the superradiant amplification process. We find that the magnetic charge of the spacetime affects the magnitude of the amplification and also significantly enlarges the allowed frequency ranges for which superradiance happens. In comparison, our analysis reveals that some of the behaviours are quite similar to what has been found in the case of the Kerr-Newmann black hole. Moreover, in specific parameter spaces, we observe exact similarities, which could imply a probable correspondence between the magnetically charged black hole and the Kerr-Newman black hole in certain scenarios. In addition to this, we have investigated the superradiant instability regime due to the massive potential barrier and also compared our results with that of the Kerr-Newmann black hole.
Published version
References in corpus (21)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- GW170814: A Three-Detector Observation of Gravitational Waves from a Binary Black Hole Coalescence
- First Sagittarius A* Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole in the Center of the Milky Way
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- Horizon-scale tests of gravity theories and fundamental physics from the Event Horizon Telescope image of Sagittarius A
- Rotating regular black holes
- Construction of Regular Black Holes in General Relativity
- Generating rotating regular black hole solutions without complexification
- Open data from the third observing run of LIGO, Virgo, KAGRA and GEO
- All-sky search for gravitational wave emission from scalar boson clouds around spinning black holes in LIGO O3 data
- An Upper Limit on the Charge of the Black Hole Sgr A* from EHT Observations
- Absorption of planar massless scalar waves by Bardeen regular black holes
- Constraints on Kerr-Newman black holes from merger-ringdown gravitational-wave observations
- Absorption of electromagnetic and gravitational waves by Kerr black holes: Shadows, superradiance and the spin-helicity effect
- Rotating black holes in general relativity coupled to nonlinear electrodynamics
- Massive and charged scalar field in Kerr-Newman spacetime: Absorption and superradiance
- Testing regular black holes with X-ray and GW data
- Scalar absorption by charged rotating black holes
- Quantum non-stationary phenomena of spin systems in collision models
- Superradiance of massive scalar particles around rotating regular black holes