A multi-wavelength investigation of the radio-loud supernova PTF11qcj and its circumstellar environment
A. Corsi, E. O. Ofek, A. Gal-Yam, D. A. Frail, S. R. Kulkarni, D. B., Fox, M. M. Kasliwal, M. Sullivan, A. Horesh, J. Carpenter, K. Maguire, I., Arcavi, S. B. Cenko, Y. Cao, K. Mooley, Y.-C. Pan, B. Sesar, A. Sternberg, D., Xu, D. Bersier, P. James, J. S. Bloom, P. E. Nugent

TL;DR
This study presents a comprehensive multi-wavelength analysis of the radio-loud supernova PTF11qcj, revealing its interaction with circumstellar material, progenitor characteristics, and possible pre-explosion activity, contributing new insights into Wolf-Rayet star explosions.
Contribution
It provides the first detailed multi-wavelength observational characterization of PTF11qcj, highlighting deviations from simple models and suggesting precursor eruptions in Wolf-Rayet progenitors.
Findings
PTF11qcj is a radio-loud supernova with luminosity comparable to SN 1998bw.
Evidence of a precursor eruption ~2.5 years before explosion.
Progenitor likely a Wolf-Rayet star with significant mass loss.
Abstract
We present the discovery, classification, and extensive panchromatic (from radio to X-ray) follow-up observations of PTF11qcj, a supernova discovered by the Palomar Transient Factory. PTF11qcj is located at a distance of dL ~ 124 Mpc. Our observations with the Karl G. Jansky Very Large Array show that this event is radio-loud: PTF11qcj reached a radio peak luminosity comparable to that of the famous gamma-ray-burst-associated supernova 1998bw (L_{5GHz} ~ 10^{29} erg/s/Hz). PTF11qcj is also detected in X-rays with the Chandra observatory, and in the infrared band with Spitzer. Our multi-wavelength analysis probes the supernova interaction with circumstellar material. The radio observations suggest a progenitor mass-loss rate of ~10^{-4} Msun/yr x (v_w/1000 km/s), and a velocity of ~(0.3-0.5)c for the fastest moving ejecta (at ~10d after explosion). However, these estimates are derived…
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