The unluckiest star: A spectroscopically confirmed repeated partial tidal disruption event AT 2022dbl

Fuente: arXiv
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Autores principales: Lin, Zheyu, Jiang, Ning, Wang, Tinggui, Kong, Xu, Li, Dongyue, He, Han, Wang, Yibo, Zhu, Jiazheng, Li, Wentao, Jiang, Ji-an, Singh, Avinash, Teja, Rishabh Singh, Sahu, D. K., Jin, Chichuan, Maeda, Keiichi, Huang, Shifeng
Formato: Preprint
Publicado: 2024
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author Lin, Zheyu
Jiang, Ning
Wang, Tinggui
Kong, Xu
Li, Dongyue
He, Han
Wang, Yibo
Zhu, Jiazheng
Li, Wentao
Jiang, Ji-an
Singh, Avinash
Teja, Rishabh Singh
Sahu, D. K.
Jin, Chichuan
Maeda, Keiichi
Huang, Shifeng
author_facet Lin, Zheyu
Jiang, Ning
Wang, Tinggui
Kong, Xu
Li, Dongyue
He, Han
Wang, Yibo
Zhu, Jiazheng
Li, Wentao
Jiang, Ji-an
Singh, Avinash
Teja, Rishabh Singh
Sahu, D. K.
Jin, Chichuan
Maeda, Keiichi
Huang, Shifeng
contents The unluckiest star orbits a supermassive black hole elliptically. Every time it reaches the pericenter, it shallowly enters the tidal radius and gets partially tidal disrupted, producing a series of flares. Confirmation of a repeated partial tidal disruption event (pTDE) requires not only evidence to rule out other types of transients, but also proof that only one star is involved, as TDEs from multiple stars can also produce similar flares. In this letter, we report the discovery of a repeated pTDE, AT 2022dbl. In a quiescent galaxy at $z=0.0284$, two separate optical/UV flares have been observed in 2022 and 2024, with no bright X-ray, radio or mid-infrared counterparts. Compared to the first flare, the second flare has a similar blackbody temperature of ~26,000 K, slightly lower peak luminosity, and slower rise and fall phases. Compared to the ZTF TDEs, their blackbody parameters and light curve shapes are all similar. The spectra taken during the second flare show a steeper continuum than the late-time spectra of the previous flare, consistent with a newly risen flare. More importantly, the possibility of two independent TDEs can be largely ruled out because the optical spectra taken around the peak of the two flares exhibit highly similar broad Balmer, N III and possible He II emission lines, especially the extreme ~4100Å emission lines. This represents the first robust spectroscopic evidence for a repeated pTDE, which can soon be verified by observing the third flare, given its short orbital period.
format Preprint
id arxiv_https___arxiv_org_abs_2405_10895
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The unluckiest star: A spectroscopically confirmed repeated partial tidal disruption event AT 2022dbl
Lin, Zheyu
Jiang, Ning
Wang, Tinggui
Kong, Xu
Li, Dongyue
He, Han
Wang, Yibo
Zhu, Jiazheng
Li, Wentao
Jiang, Ji-an
Singh, Avinash
Teja, Rishabh Singh
Sahu, D. K.
Jin, Chichuan
Maeda, Keiichi
Huang, Shifeng
High Energy Astrophysical Phenomena
Astrophysics of Galaxies
The unluckiest star orbits a supermassive black hole elliptically. Every time it reaches the pericenter, it shallowly enters the tidal radius and gets partially tidal disrupted, producing a series of flares. Confirmation of a repeated partial tidal disruption event (pTDE) requires not only evidence to rule out other types of transients, but also proof that only one star is involved, as TDEs from multiple stars can also produce similar flares. In this letter, we report the discovery of a repeated pTDE, AT 2022dbl. In a quiescent galaxy at $z=0.0284$, two separate optical/UV flares have been observed in 2022 and 2024, with no bright X-ray, radio or mid-infrared counterparts. Compared to the first flare, the second flare has a similar blackbody temperature of ~26,000 K, slightly lower peak luminosity, and slower rise and fall phases. Compared to the ZTF TDEs, their blackbody parameters and light curve shapes are all similar. The spectra taken during the second flare show a steeper continuum than the late-time spectra of the previous flare, consistent with a newly risen flare. More importantly, the possibility of two independent TDEs can be largely ruled out because the optical spectra taken around the peak of the two flares exhibit highly similar broad Balmer, N III and possible He II emission lines, especially the extreme ~4100Å emission lines. This represents the first robust spectroscopic evidence for a repeated pTDE, which can soon be verified by observing the third flare, given its short orbital period.
title The unluckiest star: A spectroscopically confirmed repeated partial tidal disruption event AT 2022dbl
topic High Energy Astrophysical Phenomena
Astrophysics of Galaxies
url https://arxiv.org/abs/2405.10895