TL;DR
RAPTOR II is an advanced, efficient numerical code for polarized radiative transfer in curved spacetime, aiding the interpretation of polarized emissions from black holes by incorporating a new formalism and hybrid integration scheme.
Contribution
The paper extends the RAPTOR code to include polarization, introduces a Lorentz-invariant ray representation, and develops a hybrid integrator for improved speed and accuracy in curved spacetime.
Findings
Successfully verified with test problems
Achieves convergence with existing codes
Capable of modeling polarized radiation near black holes
Abstract
Accreting supermassive black holes are sources of polarized radiation that propagates through highly curved spacetime before reaching the observer. In order to help interpret observations of such polarized emission, accurate and efficient numerical schemes for polarized radiative transfer in curved spacetime are needed. In this manuscript we extend our publicly available radiative transfer code RAPTOR to include polarization. We provide a brief review of different codes and methods for covariant polarized radiative transfer available in the literature and existing codes, and present an efficient new scheme. For the spacetime-propagation aspect of the computation, we develop a compact, Lorentz-invariant representation of a polarized ray. For the plasma-propagation aspect of the computation, we perform a formal analysis of the stiffness of the polarized radiative-transfer equation with…
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