Statistical features of multiple Compton scattering in a strong magnetic field
arXiv:2204.12271 · doi:10.1103/PhysRevD.105.103027
Abstract
Compton scattering is a key process shaping spectra formation and accretion flow dynamics in accreting strongly magnetized neutron stars. A strong magnetic field affects the scattering cross section and makes it dependent on photon energy, momentum, and polarization state. Using Monte Carlo simulations, we investigate statistical features of Compton scattering of polarized X-ray radiation in a strong magnetic field. Our analysis is focused on photon gas behaviour well inside the scattering region. We take into account the resonant scattering at the fundamental cyclotron frequency, thermal distribution of electrons at the ground Landau level, and bulk velocity of the electron gas. We show that (i) the photons scattered around the cyclotron energy by the electron gas at rest tend to acquire the final energy close to the cyclotron one with a very small dispersion measure; (ii) the redistribution of photons within the Doppler core of cyclotron resonance differs significantly from the complete redistribution; (iii) the efficiency of momentum transfer from photons to the electron gas is affected by the temperature of electron gas both for photons at cyclotron energy and below it; (iv) the momentum transfer from photons to the electron gas of non-zero bulk velocity is more efficient in the case of magnetic scattering.
18 pages, 13 figures, accepted for publication in Phys.Rev.D
References in corpus (9)
- Physics of Strongly Magnetized Neutron Stars
- Thermal and Bulk Comptonization in Accretion-Powered X-Ray Pulsars
- The critical accretion luminosity for magnetized neutron stars
- X-ray spectra from magnetar candidates. I. Monte Carlo simulations in the non-relativistic regime
- Atmosphere Models of Magnetized Neutron Stars: QED Effects, Radiation Spectra, and Polarization Signals
- Cyclotron resonant scattering feature simulations. I. Thermally averaged cyclotron scattering cross sections, mean free photon-path tables, and electron momentum sampling
- Super-Eddington Emission from Accreting, Highly Magnetised Neutron Stars with a Multipolar Magnetic Field
- Statistical equilibrium and ion cyclotron absorption/emission in strongly magnetized plasmas
- Relativistic kinetic equation for Compton scattering of polarized radiation in strong magnetic field