Unveiling the dynamics of the ultra-fast outflow in IRAS 13224-3809 with X-ray spectroscopy

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Hauptverfasser: Condò, Pierpaolo, Tombesi, Francesco, Laurenti, Marco, Luminari, Alfredo, Middei, Riccardo, Piconcelli, Enrico, Gaspari, Massimo, Lanzuisi, Giorgio, Serafinelli, Roberto, Tortosa, Alessia, Zappacosta, Luca, Nicastro, Fabrizio
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Veröffentlicht: 2026
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author Condò, Pierpaolo
Tombesi, Francesco
Laurenti, Marco
Luminari, Alfredo
Middei, Riccardo
Piconcelli, Enrico
Gaspari, Massimo
Lanzuisi, Giorgio
Serafinelli, Roberto
Tortosa, Alessia
Zappacosta, Luca
Nicastro, Fabrizio
author_facet Condò, Pierpaolo
Tombesi, Francesco
Laurenti, Marco
Luminari, Alfredo
Middei, Riccardo
Piconcelli, Enrico
Gaspari, Massimo
Lanzuisi, Giorgio
Serafinelli, Roberto
Tortosa, Alessia
Zappacosta, Luca
Nicastro, Fabrizio
contents IRAS 13224-3809 is one of the most intensively studied narrow-line Seyfert 1 galaxies, with a rich literature reporting diverse and sometimes contrasting interpretations of its complex X-ray spectra and variability. Notably, a fast and variable ultra-fast outflow (UFO) was discovered in this source, sparking debate over its nature and driving mechanisms. Motivated by these open questions, we present a systematic, time- and flux-resolved reanalysis of the full 2016 XMM-Newton (1.5 Ms) and NuSTAR (500 ks) datasets, employing careful background treatment and equal-count spectral selections. We uniformly apply three spectral models, including photo-ionized absorption, broad emission, and relativistic reflection, to all intervals. We unambiguously confirm the presence of a strong, variable outflow with velocities exceeding 0.2$c$, and find that models including absorption consistently reveal robust physical trends: a velocity-luminosity correlation of the UFO, persistently large line widths, and no compelling equivalent-width-flux anti-correlation. When emission or reflection components are included, the significance of the absorption features decreases, but significant UFO detections remain in most intervals. We also report clear evidence for rapid acceleration of the wind in response to X-ray flares, with the outflow carrying momentum and kinetic power sufficient to drive an efficient AGN feedback. The observed rapid response favors magnetic driving, analogous to coronal mass ejections, over radiative acceleration. Our results reconcile contrasting previous claims and underline the need for high-resolution spectroscopy to resolve the wind substructure. The observed UFO variability and structure are consistent with a multiphase, clumpy wind produced by thermal and hydrodynamic instabilities, with magnetic reconnection providing the rapid acceleration mechanism.
format Preprint
id arxiv_https___arxiv_org_abs_2604_27061
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Unveiling the dynamics of the ultra-fast outflow in IRAS 13224-3809 with X-ray spectroscopy
Condò, Pierpaolo
Tombesi, Francesco
Laurenti, Marco
Luminari, Alfredo
Middei, Riccardo
Piconcelli, Enrico
Gaspari, Massimo
Lanzuisi, Giorgio
Serafinelli, Roberto
Tortosa, Alessia
Zappacosta, Luca
Nicastro, Fabrizio
High Energy Astrophysical Phenomena
Astrophysics of Galaxies
IRAS 13224-3809 is one of the most intensively studied narrow-line Seyfert 1 galaxies, with a rich literature reporting diverse and sometimes contrasting interpretations of its complex X-ray spectra and variability. Notably, a fast and variable ultra-fast outflow (UFO) was discovered in this source, sparking debate over its nature and driving mechanisms. Motivated by these open questions, we present a systematic, time- and flux-resolved reanalysis of the full 2016 XMM-Newton (1.5 Ms) and NuSTAR (500 ks) datasets, employing careful background treatment and equal-count spectral selections. We uniformly apply three spectral models, including photo-ionized absorption, broad emission, and relativistic reflection, to all intervals. We unambiguously confirm the presence of a strong, variable outflow with velocities exceeding 0.2$c$, and find that models including absorption consistently reveal robust physical trends: a velocity-luminosity correlation of the UFO, persistently large line widths, and no compelling equivalent-width-flux anti-correlation. When emission or reflection components are included, the significance of the absorption features decreases, but significant UFO detections remain in most intervals. We also report clear evidence for rapid acceleration of the wind in response to X-ray flares, with the outflow carrying momentum and kinetic power sufficient to drive an efficient AGN feedback. The observed rapid response favors magnetic driving, analogous to coronal mass ejections, over radiative acceleration. Our results reconcile contrasting previous claims and underline the need for high-resolution spectroscopy to resolve the wind substructure. The observed UFO variability and structure are consistent with a multiphase, clumpy wind produced by thermal and hydrodynamic instabilities, with magnetic reconnection providing the rapid acceleration mechanism.
title Unveiling the dynamics of the ultra-fast outflow in IRAS 13224-3809 with X-ray spectroscopy
topic High Energy Astrophysical Phenomena
Astrophysics of Galaxies
url https://arxiv.org/abs/2604.27061