Covariant Compton Scattering Kernel in General Relativistic Radiative Transfer
arXiv:1305.6059 · doi:10.1093/mnras/stt786
Abstract
A covariant scattering kernel is a core component in any self-consistent general relativistic radiative transfer formulation in scattering media. An explicit closed-form expression for a covariant Compton scattering kernel with a good dynamical energy range has unfortunately not been available thus far. Such an expression is essential to obtain numerical solutions to the general relativistic radiative transfer equations in complicated astrophysical settings where strong scattering effects are coupled with highly relativistic flows and steep gravitational gradients. Moreover, this must be performed in an efficient manner. With a self-consistent covariant approach, we have derived a closed-form expression for the Compton scattering kernel for arbitrary energy range. The scattering kernel and its angular moments are expressed in terms of hypergeometric functions, and their derivations are shown explicitly in this paper. We also evaluate the kernel and its moments numerically, assessing various techniques for their calculation. Finally, we demonstrate that our closed-form expression produces the same results as previous calculations, which employ fully numerical computation methods and are applicable only in more restrictive settings.
29 pages, 10 figures, 2 tables; Accepted for publication in MNRAS
References in corpus (12)
- Truncated Moment Formalism for Radiation Hydrodynamics in Numerical Relativity
- GYOTO: a new general relativistic ray-tracing code
- General relativistic radiative transfer: formulation and emission from structured tori around black holes
- General relativistic radiation hydrodynamics of accretion flows. I: Bondi-Hoyle accretion
- Relativistic Radiation Magnetohydrodynamics in Dynamical Spacetimes: Numerical Methods and Tests
- The Polarization Properties of Inverse Compton Emission and Implications for Blazar Observations with the GEMS X-Ray Polarimeter
- X-ray Polarization in Relativistic Jets
- On the Non-relativistic Origin of Red-skewed Iron Lines in CV, Neutron Star and Black Hole Sources
- Line emission from optically thick relativistic accretion tori
- Theory of Compton scattering by anisotropic electrons
- X-ray Polarization Signatures of Compton Scattering in Magnetic Cataclysmic Variables
- Compton Scattering of Fe K alpha Lines in Magnetic Cataclysmic Variables
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