Transient Relativistic Iron Emission Line from an X-ray Flaring Supermassive Black Hole

Fuente: arXiv
Enregistré dans:
Détails bibliographiques
Auteurs principaux: Zhao, Xiurui, Ajello, Marco, Civano, Francesca, Garcıa, Javier A., Kammoun, Elias, Marchesi, Stefano, Shen, Yue, Stern, Daniel, Yang, Qian, Boorman, Peter G., Harrison, Fiona, Kara, Erin, Pizzetti, Andrealuna, Silver, Ross, Sokolovsky, Kirill V., Stone, Zachary, Torres-Alba, Nuria, Wu, Qiaoya, Zhu, Peixin
Format: Preprint
Publié: 2026
Sujets:
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1866911436790300672
author Zhao, Xiurui
Ajello, Marco
Civano, Francesca
Garcıa, Javier A.
Kammoun, Elias
Marchesi, Stefano
Shen, Yue
Stern, Daniel
Yang, Qian
Boorman, Peter G.
Harrison, Fiona
Kara, Erin
Pizzetti, Andrealuna
Silver, Ross
Sokolovsky, Kirill V.
Stone, Zachary
Torres-Alba, Nuria
Wu, Qiaoya
Zhu, Peixin
author_facet Zhao, Xiurui
Ajello, Marco
Civano, Francesca
Garcıa, Javier A.
Kammoun, Elias
Marchesi, Stefano
Shen, Yue
Stern, Daniel
Yang, Qian
Boorman, Peter G.
Harrison, Fiona
Kara, Erin
Pizzetti, Andrealuna
Silver, Ross
Sokolovsky, Kirill V.
Stone, Zachary
Torres-Alba, Nuria
Wu, Qiaoya
Zhu, Peixin
contents We report the discovery of the first transient relativistic iron Kα line in an Active Galactic Nucleus (AGN) J1047+5907. The line was detected 21.5 days (rest-frame) after an X-ray coronal flare observed in 2008 and it exhibits significant broadening consistent with relativistic reflection from the accretion disk in the vicinity of the central supermassive black hole (SMBH). The line has a width of ~300 eV, corresponding to a Keplerian velocity of 14,000 km s-1, at a distance of 5-41 light-days from the SMBH, strongly implying that the observed coronal flare triggered the emergence of the line. This event provides rare direct evidence of the response of the accretion disk to impulsive coronal illumination and offers a new method to probe the SMBH and disk physics. The relativistic modeling favors a broadened line produced by distant reflection from an accretion disk around a rapidly spinning black hole viewed at an intermediate inclination, consistent with other observations. Systematic monitoring of type 1 AGN following strong X-ray flares may open a new observational window into the innermost regions of AGN, enabling constraints on the physics of SMBH and its accretion disk at different radii that are otherwise challenging to access.
format Preprint
id arxiv_https___arxiv_org_abs_2602_09232
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Transient Relativistic Iron Emission Line from an X-ray Flaring Supermassive Black Hole
Zhao, Xiurui
Ajello, Marco
Civano, Francesca
Garcıa, Javier A.
Kammoun, Elias
Marchesi, Stefano
Shen, Yue
Stern, Daniel
Yang, Qian
Boorman, Peter G.
Harrison, Fiona
Kara, Erin
Pizzetti, Andrealuna
Silver, Ross
Sokolovsky, Kirill V.
Stone, Zachary
Torres-Alba, Nuria
Wu, Qiaoya
Zhu, Peixin
High Energy Astrophysical Phenomena
Astrophysics of Galaxies
We report the discovery of the first transient relativistic iron Kα line in an Active Galactic Nucleus (AGN) J1047+5907. The line was detected 21.5 days (rest-frame) after an X-ray coronal flare observed in 2008 and it exhibits significant broadening consistent with relativistic reflection from the accretion disk in the vicinity of the central supermassive black hole (SMBH). The line has a width of ~300 eV, corresponding to a Keplerian velocity of 14,000 km s-1, at a distance of 5-41 light-days from the SMBH, strongly implying that the observed coronal flare triggered the emergence of the line. This event provides rare direct evidence of the response of the accretion disk to impulsive coronal illumination and offers a new method to probe the SMBH and disk physics. The relativistic modeling favors a broadened line produced by distant reflection from an accretion disk around a rapidly spinning black hole viewed at an intermediate inclination, consistent with other observations. Systematic monitoring of type 1 AGN following strong X-ray flares may open a new observational window into the innermost regions of AGN, enabling constraints on the physics of SMBH and its accretion disk at different radii that are otherwise challenging to access.
title Transient Relativistic Iron Emission Line from an X-ray Flaring Supermassive Black Hole
topic High Energy Astrophysical Phenomena
Astrophysics of Galaxies
url https://arxiv.org/abs/2602.09232