MUSE IFU observations of galaxies hosting Tidal Disruption Events

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Main Authors: Pursiainen, M., Leloudas, G., Lyman, J., Byrne, C. M., Charalampopoulos, P., Ramsden, P., Kim, S., Schulze, S., Anderson, J. P., Bauer, F. E., Dai, L., Galbany, L., Kuncarayakti, H., Nicholl, M., Pessi, T., Prieto, J. L., Sanchez, S. F.
Format: Preprint
Published: 2025
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author Pursiainen, M.
Leloudas, G.
Lyman, J.
Byrne, C. M.
Charalampopoulos, P.
Ramsden, P.
Kim, S.
Schulze, S.
Anderson, J. P.
Bauer, F. E.
Dai, L.
Galbany, L.
Kuncarayakti, H.
Nicholl, M.
Pessi, T.
Prieto, J. L.
Sanchez, S. F.
author_facet Pursiainen, M.
Leloudas, G.
Lyman, J.
Byrne, C. M.
Charalampopoulos, P.
Ramsden, P.
Kim, S.
Schulze, S.
Anderson, J. P.
Bauer, F. E.
Dai, L.
Galbany, L.
Kuncarayakti, H.
Nicholl, M.
Pessi, T.
Prieto, J. L.
Sanchez, S. F.
contents We present an analysis of twenty tidal disruption event (TDE) host galaxies observed with the MUSE integral-field spectrograph on ESO VLT. We investigate the presence of extended emission line regions (EELRs) and study stellar populations mostly at sub-kpc scale around the host nuclei. EELRs are detected in 5/20 hosts, including two unreported systems. All EELRs are found at z<0.045, suggesting a distance bias and faint EELRs may be missed at higher redshift. EELRs only appear in post-merger systems and all such hosts at z<0.045 show them. Thus, we conclude that TDEs and galaxy mergers have a strong relation, and >45% of post-merger hosts in the sample exhibit EELRs. Furthermore, we constrained the distributions of stellar masses near the central black holes (BHs), using the spectral synthesis code Starlight and BPASS stellar evolution models. The youngest nuclear populations have typical ages of 1 Gyr and stellar masses below 2.5MSun. The populations that can produce observable TDEs around non-rotating BHs are dominated by subsolar-mass stars. 3/4 TDEs requiring larger stellar masses exhibit multi-peaked light curves, possibly implying relation to repeated partial disruptions of high-mass stars. The found distributions are in tension with the masses of the stars derived using light curve models. Mass segregation of the disrupted stars can enhance the rate of TDEs from supersolar-mass stars but our study implies that low-mass TDEs should still be abundant and even dominate the distribution, unless there is a mechanism that prohibits low-mass TDEs or their detection.
format Preprint
id arxiv_https___arxiv_org_abs_2507_12520
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle MUSE IFU observations of galaxies hosting Tidal Disruption Events
Pursiainen, M.
Leloudas, G.
Lyman, J.
Byrne, C. M.
Charalampopoulos, P.
Ramsden, P.
Kim, S.
Schulze, S.
Anderson, J. P.
Bauer, F. E.
Dai, L.
Galbany, L.
Kuncarayakti, H.
Nicholl, M.
Pessi, T.
Prieto, J. L.
Sanchez, S. F.
High Energy Astrophysical Phenomena
Astrophysics of Galaxies
We present an analysis of twenty tidal disruption event (TDE) host galaxies observed with the MUSE integral-field spectrograph on ESO VLT. We investigate the presence of extended emission line regions (EELRs) and study stellar populations mostly at sub-kpc scale around the host nuclei. EELRs are detected in 5/20 hosts, including two unreported systems. All EELRs are found at z<0.045, suggesting a distance bias and faint EELRs may be missed at higher redshift. EELRs only appear in post-merger systems and all such hosts at z<0.045 show them. Thus, we conclude that TDEs and galaxy mergers have a strong relation, and >45% of post-merger hosts in the sample exhibit EELRs. Furthermore, we constrained the distributions of stellar masses near the central black holes (BHs), using the spectral synthesis code Starlight and BPASS stellar evolution models. The youngest nuclear populations have typical ages of 1 Gyr and stellar masses below 2.5MSun. The populations that can produce observable TDEs around non-rotating BHs are dominated by subsolar-mass stars. 3/4 TDEs requiring larger stellar masses exhibit multi-peaked light curves, possibly implying relation to repeated partial disruptions of high-mass stars. The found distributions are in tension with the masses of the stars derived using light curve models. Mass segregation of the disrupted stars can enhance the rate of TDEs from supersolar-mass stars but our study implies that low-mass TDEs should still be abundant and even dominate the distribution, unless there is a mechanism that prohibits low-mass TDEs or their detection.
title MUSE IFU observations of galaxies hosting Tidal Disruption Events
topic High Energy Astrophysical Phenomena
Astrophysics of Galaxies
url https://arxiv.org/abs/2507.12520