Footprints in the Wind: Probing X-ray Outflows in NGC 7469 using Near-Infrared Emission Lines

Fuente: arXiv
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Main Authors: Feuillet, Léa M., Kraemer, Steve, Falcão, Anna Trindade, Braito, Valentina, Meléndez, Marcio, Schmitt, Henrique R., Reeves, James N., Middei, Riccardo, Fischer, Travis C., Revalski, Mitchell
Format: Preprint
Published: 2025
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author Feuillet, Léa M.
Kraemer, Steve
Falcão, Anna Trindade
Braito, Valentina
Meléndez, Marcio
Schmitt, Henrique R.
Reeves, James N.
Middei, Riccardo
Fischer, Travis C.
Revalski, Mitchell
author_facet Feuillet, Léa M.
Kraemer, Steve
Falcão, Anna Trindade
Braito, Valentina
Meléndez, Marcio
Schmitt, Henrique R.
Reeves, James N.
Middei, Riccardo
Fischer, Travis C.
Revalski, Mitchell
contents AGN winds play an important role in the co-evolution of supermassive black holes and their host galaxies, yet their driving mechanisms and impact on star formation remain subjects of active investigation. Critically, the lack of X-ray Integral Field Units currently limits our ability to acquire spatially resolved velocity information in the X-ray regime. However, instead, this can be achieved using the James Webb Space Telescope. As part of an ongoing investigation of the nuclear feedback processes in the nearby luminous AGN NGC 7469, we present an analysis of the kinematics of the X-ray emitting outflows using near-infrared footprint lines such as [Mg VIII] 3.03 um. These high-ionization emission lines are associated with the same gas analyzed in the X-ray, and thus can be used to probe the footprint of the X-ray wind's velocity structure and ionization state. Thanks to the wide wavelength range available with JWST we also use nebular (e.g. [S IV] 10.51 um) and coronal (e.g. [Ne V] 14.32 um) emission lines to offer a comprehensive multi-phase view of the outflows. We present mass and kinetic energy outflow rates, and find that while the feedback processes in NGC 7469 are not efficient by theoretical benchmarks, the most massive and energetic component is the high ionization X-ray gas.
format Preprint
id arxiv_https___arxiv_org_abs_2512_09815
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Footprints in the Wind: Probing X-ray Outflows in NGC 7469 using Near-Infrared Emission Lines
Feuillet, Léa M.
Kraemer, Steve
Falcão, Anna Trindade
Braito, Valentina
Meléndez, Marcio
Schmitt, Henrique R.
Reeves, James N.
Middei, Riccardo
Fischer, Travis C.
Revalski, Mitchell
Astrophysics of Galaxies
AGN winds play an important role in the co-evolution of supermassive black holes and their host galaxies, yet their driving mechanisms and impact on star formation remain subjects of active investigation. Critically, the lack of X-ray Integral Field Units currently limits our ability to acquire spatially resolved velocity information in the X-ray regime. However, instead, this can be achieved using the James Webb Space Telescope. As part of an ongoing investigation of the nuclear feedback processes in the nearby luminous AGN NGC 7469, we present an analysis of the kinematics of the X-ray emitting outflows using near-infrared footprint lines such as [Mg VIII] 3.03 um. These high-ionization emission lines are associated with the same gas analyzed in the X-ray, and thus can be used to probe the footprint of the X-ray wind's velocity structure and ionization state. Thanks to the wide wavelength range available with JWST we also use nebular (e.g. [S IV] 10.51 um) and coronal (e.g. [Ne V] 14.32 um) emission lines to offer a comprehensive multi-phase view of the outflows. We present mass and kinetic energy outflow rates, and find that while the feedback processes in NGC 7469 are not efficient by theoretical benchmarks, the most massive and energetic component is the high ionization X-ray gas.
title Footprints in the Wind: Probing X-ray Outflows in NGC 7469 using Near-Infrared Emission Lines
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2512.09815