Partial wave analysis of the Dirac fermions scattered from Schwarzschild black holes
arXiv:1409.7201 · doi:10.1140/epjc/s10052-016-3936-9
Abstract
Asymptotic analytic solutions of the Dirac equation, giving the scattering modes (of the continuous energy spectrum, ) in Schwarzschild's chart and Cartesian gauge, are used for building the partial wave analysis of Dirac fermions scattered by black holes. The contribution of the bound states to absorption and possible resonant scattering is neglected because of some technical difficulties related to the discrete spectrum that is less studied so far. In this framework, the analytic expressions of the differential cross section and induced polarization degree are derived in terms of scattering angle, mass of the black hole, energy and mass of the fermion. Moreover, the closed form of the absorption cross section due to the scattering modes is derived showing that in the high-energy limit this tends to the event horizon area regardless of the fermion mass (including zero). A graphical study presents the differential cross section analyzing the forward/backward scattering (known also as glory scattering) and the polarization degree as functions of scattering angle. The graphical analysis shows the presence of oscillations in scattering intensity around forward/backward directions, phenomena known as spiral scattering. The energy dependence of the differential cross section is also established by using analytical and graphical methods.
34 pages
References in corpus (5)
- Fermion scattering by a Schwarzschild black hole
- Scattering of Scalar Waves by Schwarzschild Black Hole Immersed in Magnetic Field
- Approximative analytical solutions of the Dirac equation in Schwarzschild spacetime
- Orbiting phenomena in black hole scattering
- On Born approximation in black hole scattering
Cited by in corpus (23)
- Absorption and scattering of a noncommutative black hole
- Derivations of group rings
- Quantum-corrected scattering and absorption of a Schwarzschild black hole with GUP
- The Dirac equation in general relativity, a guide for calculations
- Absorption, scattering and shadow by a noncommutative black hole with global monopole
- Scalar scattering in Schwarzschild spacetime: Integral equation method
- Scattering from compact objects: Regge poles and the complex angular momentum method
- Partial wave analysis of the Dirac fermions scattered from Reissner - Nordstr\" om charged black holes
- On-axis scattering of scalar fields by charged rotating black holes
- Effect of Particle Spin on Trajectory Deflection and Gravitational Lensing
- Slowly damped quasinormal modes of the massive Dirac field in d-dimensional Tangherlini spacetime
- First order QED effects on a spatially flat FLRW spacetime with a Milne-type scale factor
- Scattering of massless fermions by Schwarzschild and Reissner-Nordström black holes
- Scattering of massless scalar field by charged dilatonic black holes
- Scalar field in Reissner-Nordström spacetime: Bound state and scattering state
- Series reduction method for scattering of planar waves by Kerr-Newman black holes
- Scattering of Dirac fermions by spherical massive bodies
- Fermion scattering by a class of Bardeen black holes
- Solutions of the massive Dirac equation in the near-horizon metric of the extremal five dimensional Myers-Perry black hole with equal angular momenta
- Quasibound states of the Dirac field in Schwarzschild and Reissner-Nordström black hole backgrounds
- Scattering Cross Section and Stability of Global Monopoles
- Scattering and absorption by extra-dimensional black holes with GUP
- Scattering of quantum fields by a MOG Black Hole