We present extensive radio observations of a Type Ic supernova, ASASSN-16fp. Our data represents the lowest frequency observations of the SN beyond 1000 days with a frequency range of 0.33−25 GHz and a temporal range of ∼ 8 to 1136 days post-explosion. The observations are best represented by a model of synchrotron emission from a shocked circumstellar shell initially suppressed by synchrotron self-absorption. Assuming equipartition of energy between relativistic particles and magnetic fields, we estimate the velocity and radius of the blast wave to be v∼0.15c and r∼3.4×1015 cm respectively at t0∼ 8 days post-explosion. We infer the total internal energy of the radio-emitting material evolves as E∼ 0.37 ×1047 (t/t0)0.65 erg. We determine the mass-loss rate of the progenitor star to be M˙∼(0.4−3.2)×10−5M⊙yr−1 at various epochs post-explosion, consistent with the mass-loss rate of Galactic Wolf-Rayet stars. The radio light curves and spectra show a signature of density enhancement in the CSM at a radius of ∼1.10×1016 cm from the explosion center.
@article{arxiv.2003.02709,
title = {Radio view of a broad-line Type Ic supernova ASASSN-16fp},
author = {Nayana A. J. and Poonam Chandra},
journal= {arXiv preprint arXiv:2003.02709},
year = {2021}
}
Comments
14 pages, 7 figures, Accepted for publication in MNRAS