Polarization properties of thermal accretion disk emission. I. Direct radiation

Fuente: arXiv
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Main Authors: Marra, L., Podgorný, J., Taverna, R., Matt, G., Bianchi, S., Dovčiak, M., Goosmann, R.
Format: Preprint
Published: 2025
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_version_ 1866918390880272384
author Marra, L.
Podgorný, J.
Taverna, R.
Matt, G.
Bianchi, S.
Dovčiak, M.
Goosmann, R.
author_facet Marra, L.
Podgorný, J.
Taverna, R.
Matt, G.
Bianchi, S.
Dovčiak, M.
Goosmann, R.
contents The X-ray polarimetric observing window re-opening is shedding new light on our current understanding of compact accreting sources. This is true, in particular, for stellar-mass black hole sources observed in the thermally-dominated state, for which the polarization signal is expected to depend on the accretion disk inclination and the black hole spin. Two main effects determine the polarization properties of the accretion disk emission: the absorption and scattering processes occurring before the radiation leaves the disk atmosphere, and the relativistic effects influencing its propagation towards the observer at infinity. In this work, we investigate these effects together considering only the contribution of direct radiation. We analyze how the ionization state of the disk atmosphere, approximated with a constant-density surface layer assumed to be either in collisional ionization equilibrium or photoionization equilibrium, can influence the spectro-polarimetric properties of the radiation at the emitting disk surface. Subsequently we study how these are modified by the propagation in a strong gravitational field.
format Preprint
id arxiv_https___arxiv_org_abs_2507_23379
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Polarization properties of thermal accretion disk emission. I. Direct radiation
Marra, L.
Podgorný, J.
Taverna, R.
Matt, G.
Bianchi, S.
Dovčiak, M.
Goosmann, R.
High Energy Astrophysical Phenomena
The X-ray polarimetric observing window re-opening is shedding new light on our current understanding of compact accreting sources. This is true, in particular, for stellar-mass black hole sources observed in the thermally-dominated state, for which the polarization signal is expected to depend on the accretion disk inclination and the black hole spin. Two main effects determine the polarization properties of the accretion disk emission: the absorption and scattering processes occurring before the radiation leaves the disk atmosphere, and the relativistic effects influencing its propagation towards the observer at infinity. In this work, we investigate these effects together considering only the contribution of direct radiation. We analyze how the ionization state of the disk atmosphere, approximated with a constant-density surface layer assumed to be either in collisional ionization equilibrium or photoionization equilibrium, can influence the spectro-polarimetric properties of the radiation at the emitting disk surface. Subsequently we study how these are modified by the propagation in a strong gravitational field.
title Polarization properties of thermal accretion disk emission. I. Direct radiation
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2507.23379