paper

Radio evolution of a Type IIb supernova SN 2016gkg

arXiv:2206.12103 · doi:10.3847/1538-4357/ac7c1e

Abstract

We present extensive radio monitoring of a type IIb supernova (SN IIb), SN 2016gkg during 81429 days post explosion at frequencies 0.3325 GHz. The detailed radio light curves and spectra are broadly consistent with self-absorbed synchrotron emission due to the interaction of the SN shock with the circumstellar medium. The model underpredicts the flux densities at 299 days post-explosion by a factor of 2, possibly indicating a density enhancement in the CSM due to a non-uniform mass-loss from the progenitor. Assuming a wind velocity 200 km s, we estimate the mass-loss rate to be (2.2, 3.6, 3.8, 12.6, 3.7, and 5.0) 10 yr during 8, 15, 25, 48, 87, and 115 years, respectively before the explosion. The shock wave from SN 2016gkg is expanding from 0.5 10 to 7 10 cm during 24492 days post-explosion indicating a shock deceleration index, 0.8 (), and mean shock velocity 0.1c. The radio data being inconsistent with free-free absorption model and higher shock velocities are in support of a relatively compact progenitor for SN 2016gkg.

18 pages, 8 figures, accepted for publication in ApJ

Radio evolution of a Type IIb supernova SN 2016gkg · wovepaper