X-ray radiative transfer in full 3D with SKIRT
Bert Vander Meulen, Peter Camps, Marko Stalevski, Maarten Baes

TL;DR
This paper extends the 3D radiative transfer code SKIRT to include X-ray processes, enabling detailed modeling of AGN circumnuclear media in full 3D, validated through benchmarks and capable of producing synthetic X-ray images and spectra.
Contribution
The authors developed and validated new X-ray functionalities in the SKIRT code, allowing comprehensive 3D modeling of AGN environments from X-ray to millimeter wavelengths.
Findings
Excellent agreement with MYTorus and RefleX codes validates the implementation.
Discrepancies with some codes highlight the need for robust 3D radiative transfer frameworks.
The extended SKIRT code is publicly available for broad astrophysical applications.
Abstract
Models of active galactic nuclei (AGN) suggest that their circumnuclear media are complex with clumps and filaments, while recent observations hint towards polar extended structures of gas and dust, as opposed to the classical torus paradigm. The X-ray band forms an interesting window to study these circumnuclear media in great detail. In this work, we extended the radiative transfer code SKIRT with the X-ray processes that govern the broadband X-ray spectra of obscured AGN, to study the structure of AGN circumnuclear media in full 3D, based on their reflected X-ray emission. We extended the SKIRT code with Compton scattering on free electrons, photo-absorption and fluorescence by cold atomic gas, scattering on bound electrons, and extinction by dust. This includes a novel treatment of extreme-forward scattering by dust, and a detailed description of anomalous Rayleigh scattering. To…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Superconducting and THz Device Technology · Photocathodes and Microchannel Plates
