Partial wave analysis of the Dirac fermions scattered from Reissner - Nordstr\" om charged black holes
arXiv:1601.03673 · doi:10.1140/epjc/s10052-016-4260-0
Abstract
The asymptotic form of Dirac spinors in the field of the Reissner-Nordstrom black hole are derived for the scattering states (with ) obtaining the phase shifts of the partial wave analysis of Dirac fermions scattered from charged black holes. The elastic scattering and absorption are studied giving analytic formulas for the partial amplitudes and cross sections. A graphical study is performed for analysing the differential cross section (forward/backward scattering) and the polarization degree as functions of scattering angle.
6 two-column pages, 5 figures, a new figure with absorption included and new comments
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Cited by in corpus (13)
- Rainbow scattering in the gravitational field of a compact object
- Scalar scattering in Schwarzschild spacetime: Integral equation method
- On-axis scattering of scalar fields by charged rotating black holes
- Slowly damped quasinormal modes of the massive Dirac field in d-dimensional Tangherlini spacetime
- Scattering of massless fermions by Schwarzschild and Reissner-Nordström black holes
- Black holes with surrounding matter and rainbow scattering
- Fermion scattering by a class of Bardeen black holes
- Scattering of Dirac fermions by spherical massive bodies
- Massless fermions on static general prolate metrics and their Heun solutions
- 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 and conversion of electromagnetic and gravitational waves by Reissner-Nordström black holes: The Regge pole description
- Scattering of quantum fields by a MOG Black Hole