AGN versus Star-formation: A MUSE Analysis of NGC 1365

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Hauptverfasser: Mullaney, Kyla, Whalen, Kelly E., Cann, Jenna, Weaver, Kimberly, McKaig, Jeffrey, Doan, Sara
Format: Preprint
Veröffentlicht: 2026
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author Mullaney, Kyla
Whalen, Kelly E.
Cann, Jenna
Weaver, Kimberly
McKaig, Jeffrey
Doan, Sara
author_facet Mullaney, Kyla
Whalen, Kelly E.
Cann, Jenna
Weaver, Kimberly
McKaig, Jeffrey
Doan, Sara
contents Active galactic nuclei (AGN) and star formation feedback may heat and remove gas from galaxies in a process that quenches ongoing star formation and shapes the evolution of galaxies. Potential impacts from these processes can be seen in the complex and interconnected signatures of AGN and star formation activity throughout a galaxy. Here, we analyze archival integral field unit (IFU) data for the nearby Seyfert galaxy, NGC 1365, as observed with the Multi Unit Spectroscopic Explorer (MUSE) instrument on the Very Large Telescope (VLT). Our analysis probes the ionization and kinematic properties of NGC 1365 at high spatial resolution over unprecedentedly large physical scales (approximately 40 kpc), allowing us to trace the effects of feedback throughout nearly an entire galaxy. We use these optical IFU data in conjunction with observations from the James Webb Space Telescope (JWST) and Chandra X-ray Observatory to analyze and compare maps of emission line flux, ionization state, star formation, and gas kinematics. In doing so, we identify a region of BPT-identified unexpectedly high ionization relative to surrounding areas in the star forming arms, and work to identify its source, finding that shock heating may play a significant role. Results from this analysis allow us to place constraints on the relative impact of AGN and star formation processes on the star forming gas in NGC 1365, as well as begin to inform our understanding on the global impacts of feedback in galaxy populations as a whole.
format Preprint
id arxiv_https___arxiv_org_abs_2602_07124
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle AGN versus Star-formation: A MUSE Analysis of NGC 1365
Mullaney, Kyla
Whalen, Kelly E.
Cann, Jenna
Weaver, Kimberly
McKaig, Jeffrey
Doan, Sara
Astrophysics of Galaxies
Active galactic nuclei (AGN) and star formation feedback may heat and remove gas from galaxies in a process that quenches ongoing star formation and shapes the evolution of galaxies. Potential impacts from these processes can be seen in the complex and interconnected signatures of AGN and star formation activity throughout a galaxy. Here, we analyze archival integral field unit (IFU) data for the nearby Seyfert galaxy, NGC 1365, as observed with the Multi Unit Spectroscopic Explorer (MUSE) instrument on the Very Large Telescope (VLT). Our analysis probes the ionization and kinematic properties of NGC 1365 at high spatial resolution over unprecedentedly large physical scales (approximately 40 kpc), allowing us to trace the effects of feedback throughout nearly an entire galaxy. We use these optical IFU data in conjunction with observations from the James Webb Space Telescope (JWST) and Chandra X-ray Observatory to analyze and compare maps of emission line flux, ionization state, star formation, and gas kinematics. In doing so, we identify a region of BPT-identified unexpectedly high ionization relative to surrounding areas in the star forming arms, and work to identify its source, finding that shock heating may play a significant role. Results from this analysis allow us to place constraints on the relative impact of AGN and star formation processes on the star forming gas in NGC 1365, as well as begin to inform our understanding on the global impacts of feedback in galaxy populations as a whole.
title AGN versus Star-formation: A MUSE Analysis of NGC 1365
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2602.07124