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VLASS Discovery of a Luminous Galactic Radio Transient Evolving on Decade Timescales

Published 21 Aug 2026 in astro-ph.HE | (2608.21320v1)

Abstract: We present a multiwavelength analysis of the radio transient VT J1906+0849, discovered as a 70 mJy source in Epoch 1 of the Very Large Array Sky Survey (VLASS), 21 yr after an NRAO VLA Sky Survey (NVSS) non-detection. Radio observations reveal the source was first detected in 2005, peaking at 200\gtrsim200 mJy in 2014, then declining until a late 2025 rebrightening. The transient sits at a Galactic latitude of 0.74<sup>\approx0.74<sup>\circ and the properties of its optical-infrared counterpart support a Galactic origin. At d15d\gtrsim15 kpc, the extreme radio luminosity is likely powered by sustained accretion onto a compact object. However, a Swift-XRT non-detection shows it is X-ray faint relative to the Galactic X-ray binary population, and the radio emission is distinct from X-ray binaries in its temporal and spectral behavior. Broadband radio spectra suggest synchrotron self-absorption, but size constraints from equipartition and very long baseline interferometry show little to no expansion in the radio-emitting region over 5+ yr, despite significant spectral evolution. Near-infrared spectroscopy reveals a single broad emission line with a stable centroid but variable width and luminosity. We attribute this feature to blueshifted Brγγ tracing a persistent asymmetric 2000\approx2000 km s<sup>1<sup>{-1} outflow. These properties are unlike any previously identified Galactic radio source. One possible interpretation is that VT J1906+0849 is a young analog of the microquasar SS 433, with a dense disk wind confining a continuously powered synchrotron outflow. This jet-wind interaction explains the compact, slowly expanding radio source and may contribute to the absence of bright X-ray emission.

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