Optically Overluminous Tidal Disruption Events: Outflow Properties and Implications for Extremely Relativistic Disruptions

Fuente: arXiv
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Autori principali: Yao, Yuhan, Alexander, Kate D., Lu, Wenbin, Somalwar, Jean J., Ravi, Vikram, Chornock, Ryan, Margutti, Raffaella, Perley, Daniel A., Miller-Jones, James C. A., Beniamini, Paz, J., Nayana A., Bloom, Joshua S., Christy, Collin T., Graham, Matthew J., Groom, Steven L., Hammerstein, Erica, Helou, George, Kasliwal, Mansi M., Kulkarni, S. R., Laher, Russ R., Mahabal, Ashish A., Neveu, Jérémy, Riddle, Reed, Smith, Roger, van Velzen, Sjoert
Natura: Preprint
Pubblicazione: 2025
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author Yao, Yuhan
Alexander, Kate D.
Lu, Wenbin
Somalwar, Jean J.
Ravi, Vikram
Chornock, Ryan
Margutti, Raffaella
Perley, Daniel A.
Miller-Jones, James C. A.
Beniamini, Paz
J., Nayana A.
Bloom, Joshua S.
Christy, Collin T.
Graham, Matthew J.
Groom, Steven L.
Hammerstein, Erica
Helou, George
Kasliwal, Mansi M.
Kulkarni, S. R.
Laher, Russ R.
Mahabal, Ashish A.
Neveu, Jérémy
Riddle, Reed
Smith, Roger
van Velzen, Sjoert
author_facet Yao, Yuhan
Alexander, Kate D.
Lu, Wenbin
Somalwar, Jean J.
Ravi, Vikram
Chornock, Ryan
Margutti, Raffaella
Perley, Daniel A.
Miller-Jones, James C. A.
Beniamini, Paz
J., Nayana A.
Bloom, Joshua S.
Christy, Collin T.
Graham, Matthew J.
Groom, Steven L.
Hammerstein, Erica
Helou, George
Kasliwal, Mansi M.
Kulkarni, S. R.
Laher, Russ R.
Mahabal, Ashish A.
Neveu, Jérémy
Riddle, Reed
Smith, Roger
van Velzen, Sjoert
contents Recent studies suggest that tidal disruption events (TDEs) with off-axis jets may manifest as optically overluminous events. To search for jet signatures at late times, we conducted radio observations of eight such optically overluminous ($M_{g, \rm peak} < -20.8$ mag) TDEs with the Very Large Array. We detect radio counterparts in four events. The observed radio luminosities ($L_{\rm 6 GHz} \sim 10^{38}$--$10^{39}$ erg s$^{-1}$) are two orders of magnitude lower than those of on-axis jetted TDEs, and we find no evidence for off-axis jets within rest-frame time of 3 yrs. Two of them (AT2022hvp and AT2021aeou) exhibit evolving radio emission, consistent with synchrotron emission from non-relativistic outflows launched near the time of first optical light. Two events (AT2020ysg and AT2020qhs) show no statistically significant variability, which can be attributed to either non-relativistic outflows or pre-existing active galactic nuclei. Compared to a control sample of fainter TDEs with $M_{g, \rm peak} > -20.5$ mag observed at similar rest-frame timescales ($t_{\rm rest} ~ 1.5$\,yr), our sample shows systematically more luminous radio emission, suggesting that optically overluminous TDEs may launch more powerful prompt non-relativistic outflows. We speculate that strong general relativistic effects near high-mass black holes ($M_{\rm BH} ~ 10^8\,M_\odot$) may play a key role. These findings motivate further investigation into the nature of relativistic disruptions around massive black holes and the physical conditions necessary for jet formation.
format Preprint
id arxiv_https___arxiv_org_abs_2507_06453
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Optically Overluminous Tidal Disruption Events: Outflow Properties and Implications for Extremely Relativistic Disruptions
Yao, Yuhan
Alexander, Kate D.
Lu, Wenbin
Somalwar, Jean J.
Ravi, Vikram
Chornock, Ryan
Margutti, Raffaella
Perley, Daniel A.
Miller-Jones, James C. A.
Beniamini, Paz
J., Nayana A.
Bloom, Joshua S.
Christy, Collin T.
Graham, Matthew J.
Groom, Steven L.
Hammerstein, Erica
Helou, George
Kasliwal, Mansi M.
Kulkarni, S. R.
Laher, Russ R.
Mahabal, Ashish A.
Neveu, Jérémy
Riddle, Reed
Smith, Roger
van Velzen, Sjoert
High Energy Astrophysical Phenomena
Recent studies suggest that tidal disruption events (TDEs) with off-axis jets may manifest as optically overluminous events. To search for jet signatures at late times, we conducted radio observations of eight such optically overluminous ($M_{g, \rm peak} < -20.8$ mag) TDEs with the Very Large Array. We detect radio counterparts in four events. The observed radio luminosities ($L_{\rm 6 GHz} \sim 10^{38}$--$10^{39}$ erg s$^{-1}$) are two orders of magnitude lower than those of on-axis jetted TDEs, and we find no evidence for off-axis jets within rest-frame time of 3 yrs. Two of them (AT2022hvp and AT2021aeou) exhibit evolving radio emission, consistent with synchrotron emission from non-relativistic outflows launched near the time of first optical light. Two events (AT2020ysg and AT2020qhs) show no statistically significant variability, which can be attributed to either non-relativistic outflows or pre-existing active galactic nuclei. Compared to a control sample of fainter TDEs with $M_{g, \rm peak} > -20.5$ mag observed at similar rest-frame timescales ($t_{\rm rest} ~ 1.5$\,yr), our sample shows systematically more luminous radio emission, suggesting that optically overluminous TDEs may launch more powerful prompt non-relativistic outflows. We speculate that strong general relativistic effects near high-mass black holes ($M_{\rm BH} ~ 10^8\,M_\odot$) may play a key role. These findings motivate further investigation into the nature of relativistic disruptions around massive black holes and the physical conditions necessary for jet formation.
title Optically Overluminous Tidal Disruption Events: Outflow Properties and Implications for Extremely Relativistic Disruptions
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2507.06453