Scattering and absorption of a scalar field impinging on a charged black hole in the Einstein-Maxwell-dilaton theory
arXiv:2111.01595 · doi:10.1103/PhysRevD.105.064043
Abstract
This study revisits the absorption and scattering process by which a massless scalar field impinges on a charged dilatonic black hole. First, we review the classical analysis to obtain the deflection angle and the differential scattering cross-section. Then, using the partial wave method, we determine the total absorption cross-section numerically in terms of the decoupling parameter called , finding that the amplitude of the dilatonic black hole is lower than the Reissner-Nordström one for mild frequencies. In the high-frequency limit, the absorption cross-section exhibits two different complex behaviors; the fine structure and the hyperfine structure. For the differential scattering cross-section, smaller values of lead to more significant amplitudes; the opposite scenario is obtained by increasing the charge-to-mass ratio. To fully grasp the main properties of the charged dilatonic black hole, we consider a different framework where the compact object is impinged by a charged massive scalar field. The superradiant effect is lessened for intermediate frequency concerning the Reissner-Nordström case. However, this effect does not necessarily imply the existence of any dynamical instability. In order to trigger the superradiant instability, unstable modes must remain trapped outside the event horizon with a mechanism based on the reflecting-mirror boundary conditions. In this way, a charged scalar field plus a charged black hole configure a charged black hole bomb. We provide an analytic formula (lower bound) for the values of the charge field, which can trigger this superradiant instability. We extend this minimal setup by considering the dilaton perturbations while freezing the other degree of freedom. The new perturbation scheme enhances the superradiance scattering and reduces the lower bound of the charge-to-mass ratio to develop a superradiant instability.
Accepted for its publication in Physical Review D
References in corpus (30)
- Ultralight scalars as cosmological dark matter
- Intermediate-Mass Black Holes
- Relativistic images of Schwarzschild black hole lensing
- Cygnus X-1 contains a 21-solar mass black hole -- implications for massive star winds
- Black holes with scalar hair in light of the Event Horizon Telescope
- Superradiant instabilities in astrophysical systems
- Solar-Mass Primordial Black Holes Explain NANOGrav Hint of Gravitational Waves
- No-Hair Theorem in the Wake of Event Horizon Telescope
- Stability of highly-charged Reissner-Nordström black holes to charged scalar perturbations
- Modeling and searching for a stochastic gravitational-wave background from ultralight vector bosons
- Absorption of a massive scalar field by a charged black hole
- Superradiant instability for black holes immersed in a magnetic field
- Effect of the hair on deflection angle by asymptotically flat black holes in Einstein-Maxwell-dilaton theory
- Electromagnetic wave scattering by Schwarzschild black holes
- Light bending and X-ray echoes from behind a supermassive black hole
- On the motion of hairy black holes in Einstein-Maxwell-dilaton theories
- Complex angular momentum in black hole physics and quasinormal modes
- Massive and charged scalar field in Kerr-Newman spacetime: Absorption and superradiance
- Superradiant instability of the charged scalar field in stringy black hole mirror system
- New Limits on Charged Dark Matter from Large-Scale Coherent Magnetic Fields
- Static charged dilaton black hole cannot be overcharged by gedanken experiments
- Absorption by black hole remnants in metric-affine gravity
- Constraints on Einstein-Maxwell dilaton-axion gravity from X-ray reflection spectroscopy
- Constructing black holes in Einstein-Maxwell-scalar theory
- Evolution of the progenitors of SNe 1993J and 2011dh revealed through late time radio and X-ray studies
- A light dilaton at the LHC
- Instability and no-hair paradigm in d-dimensional charged-AdS black holes
- Addendum to "Absorption of a massive scalar field by a charged black hole"
- Scattering of massless scalar field by charged dilatonic black holes
- Scattering of massless bosonic fields by Kerr black holes: On-axis incidence
Cited by in corpus (15)
- Shadow, lensing, quasinormal modes, greybody bounds and neutrino propagation by dyonic ModMax black holes
- Correspondence between quasinormal modes and grey-body factors for massive fields in Schwarzschild-de Sitter spacetime
- Scalar field perturbation around a rotating hairy black hole: quasinormal modes, quasibound states and superradiant instability
- Shadow of quantum extended Kruskal black hole and its super-radiance property
- Superradiant instability of a charged regular black hole
- Shedding new light on the absence of fermionic superradiance and maximal infalling rate of fermions into a black hole
- Superradiance and quasinormal modes of the gravitational perturbation around rotating hairy black hole
- Scalar Perturbation Around Rotating Regular Black Hole: Superradiance Instability and Quasinormal Modes
- Superradiance of rotating black holes surrounded by dark matter
- Trajectories of photons around a rotating black hole with unusual asymptotics
- Charged superradiant instability in a spherical regular black hole
- Accretion, Evaporation and Superradiance Phase Diagram of (Primordial) Black Holes and eV Scalar, Vector, Tensor Fields
- Gravitational waveform model based on photon motion for spinning black holes
- Hair imprints of the gravitational decoupling and hairy black hole spectroscopy
- Charged Superradiant Instability of Spherically Symmetric Regular Black Holes in de Sitter Spacetime: Time- and Frequency-Domain Analysis