A spectacular multi-wavelength transient associated with an off-axis relativistic jet

arXiv:2607.10047 · astro-ph.HE · Submitted 2026-07-11 · Read on arXiv

Delina Levine, Gregg Hallinan, Jean J. Somalwar, Dillon Z. Dong, Ehud Nakar, Kenta Hotokezaka, Vikram Ravi, Assaf Horesh, Jessie M. Miller, Casey Law, Steven T. Myers, Stella K. Ocker, Daniel D. Kelson

astro-ph.HE

Submitted: 2026-07-11

Comments: 57 pages, 10 figures, 3 tables. Submitted to Nature Astronomy

License: http://creativecommons.org/licenses/by/4.0/

The gist: Many of the most luminous extragalactic transients originate from the accretion of material onto a black hole (BH) via core-collapse, stellar mergers, or the tidal disruption of a star.

Terminology

Abstract

Many of the most luminous extragalactic transients originate from the accretion of material onto a black hole (BH) via core-collapse, stellar mergers, or the tidal disruption of a star. Some produce energetic multi-wavelength emission, displaying short, blue optical flares and bright, long-lived radio afterglows. In rare cases, these have also launched powerful relativistic jets almost exclusively detected on-axis via high-energy emission. Here we report AT 2019ijn, a radio transient discovered in the Very Large Array Sky Survey, associated with a powerful relativistic jet viewed off-axis and accompanied by a luminous (nu L nu, opt about 10 44 erg/s) optical transient. Originating from a star-forming dwarf galaxy at z = 0.273, AT 2019ijn's optical flare exhibited a fast rise (t rise, rest about 7 d) and shallow decline (t dec, rest > 38 d), followed a year later by an energetic (E about 2 times10 52 erg) radio counterpart persisting for >6 years. These combined properties are unprecedented and preclude known classes of stellar explosion powered by core-collapse. Instead, the implied accretion onto a BH and associated off-axis jet invokes an exotic BH-stellar merger or a jetted tidal disruption event (TDE) by a 10 4 - 10 6 M black hole. Favoring a TDE, this work determines the jet-launching occurrence, with the low redshift allowing constraints on the late-time evolution in contrast to prior events. Upcoming radio sky surveys will offer an unprecedented new window for further discovery of AT 2019ijn-like off-axis relativistic transients.

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