Blueshifted lines from the inner accretion disc's rotation can explain quasar absorption "forests''

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Main Authors: Hankla, Amelia M., Baker, Fergus J. E., Wilkins, Daniel R., Fabian, Andrew C.
Format: Preprint
Published: 2026
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author Hankla, Amelia M.
Baker, Fergus J. E.
Wilkins, Daniel R.
Fabian, Andrew C.
author_facet Hankla, Amelia M.
Baker, Fergus J. E.
Wilkins, Daniel R.
Fabian, Andrew C.
contents Recent XRISM observations of active galactic nuclei such as PDS 456 have revealed ``forests'' of absorption lines best modeled by five distinct absorption zones with varying large blueshifts. We propose a model in which these relativistic blueshifts originate from the motion of the accretion disc itself, rather than from a clumpy super-Eddington outflow at hundreds of gravitational radii $r_g\equiv GM/c^2$. We demonstrate that thin rings of absorbing material lying just above the accretion disc at varying radii can produce the observed energy shifts and separations of the absorption zones. In this model, the PDS 456 transmission spectrum is well reproduced by rings with widths $Δr\lesssim1r_g$ at locations between the black hole's innermost stable circular orbit (ISCO) and $\approx15r_g$. This model suggests that the absorption forests seen in XRISM observations can probe the surface structure of the innermost ($\lesssim15r_g$) regions of quasar accretion discs.
format Preprint
id arxiv_https___arxiv_org_abs_2604_09433
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Blueshifted lines from the inner accretion disc's rotation can explain quasar absorption "forests''
Hankla, Amelia M.
Baker, Fergus J. E.
Wilkins, Daniel R.
Fabian, Andrew C.
High Energy Astrophysical Phenomena
Astrophysics of Galaxies
Recent XRISM observations of active galactic nuclei such as PDS 456 have revealed ``forests'' of absorption lines best modeled by five distinct absorption zones with varying large blueshifts. We propose a model in which these relativistic blueshifts originate from the motion of the accretion disc itself, rather than from a clumpy super-Eddington outflow at hundreds of gravitational radii $r_g\equiv GM/c^2$. We demonstrate that thin rings of absorbing material lying just above the accretion disc at varying radii can produce the observed energy shifts and separations of the absorption zones. In this model, the PDS 456 transmission spectrum is well reproduced by rings with widths $Δr\lesssim1r_g$ at locations between the black hole's innermost stable circular orbit (ISCO) and $\approx15r_g$. This model suggests that the absorption forests seen in XRISM observations can probe the surface structure of the innermost ($\lesssim15r_g$) regions of quasar accretion discs.
title Blueshifted lines from the inner accretion disc's rotation can explain quasar absorption "forests''
topic High Energy Astrophysical Phenomena
Astrophysics of Galaxies
url https://arxiv.org/abs/2604.09433