AT2019ijn: a fast-rising, slow-decaying blue optical transient with exceptionally bright radio emission
Hucheng Ding, Xinwen Shu, Luming Sun, Liangduan Liu, Lei Yang, Yunwei Yu, Xueguang Zhang, Ying Gu, Fangkun Peng, Fabao Zhang, Zhumao Zhang, Ningyu Tang
astro-ph.HE, astro-ph.GA
Submitted: 2026-07-13
Comments: Published in ApJ Letters
Journal ref: ApJL, 1005, L49 (2026)
License: http://creativecommons.org/licenses/by-nc-sa/4.0/
The gist: We report the discovery of a peculiar optical transient, AT2019ijn, occurred in the nuclear region of a dwarf galaxy at z=0.273.
Terminology
Abstract
We report the discovery of a peculiar optical transient, AT2019ijn, occurred in the nuclear region of a dwarf galaxy at z=0.273. It rises rapidly to peak at a luminosity of Mg=-21.1 in 5 days, followed by a slow decline over more than a month, during which the optical emission has a persistently high blackbody temperature of T BB 1.5-1.6x10 4 K. The radio emission is exceptional which peaks at 640 days after optical discovery with a high luminosity of 2x10 31 erg/s/Hz. The peak radio luminosity is at least two orders of magnitude brighter than known radio-bright fast blue optical transients and supernova explosions at similar epochs, but comparable to jetted tidal disruption events. The luminous and long-lasting radio emission with a late-time peak can be explained by an off-axis relativistic jet with a viewing angle of 40 deg. We discuss possible origins for AT2019ijn and favor a jetted tidal disruption event involving an intermediate-mass black hole of 10 5 Msun, although a jetted magnetar model cannot be fully ruled out. AT2019ijn represents a new class of relativistic optical transients that highlights the importance of radio surveys for discovering off-axis jetted events.
Sources
- The Pan-STARRS1 Surveys
- Relativistic jets from millisecond proto-magnetars
- The GRBSN webtool: An open-source repository for gamma-ray burst-supernova associations
- PS1-11aop: Probing the Mass Loss History of a Luminous Interacting Supernova Prior to its Final Eruption with Multi-wavelength Observations
- An Intermediate-mass Black Hole Lurking in A Galactic Halo Caught Alive during Outburst
- Luminous Fast Blue Optical Transients as "Failed" Gravitational-wave Sources: Helium Core$-$Black Hole Mergers Following Delayed Dynamical Instability
- A fast powerful X-ray transient from possible tidal disruption of a white dwarf
- The Most Luminous Known Fast Blue Optical Transient AT 2024wpp: Unprecedented Evolution and Properties in the X-rays and Radio
- A luminous and hot infrared through X-ray transient at a 5 kpc offset from a dwarf galaxy
- TDE 2025abcr: A Tidal Disruption Event in the Outskirts of a Massive Galaxy
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