An optimized radio follow-up strategy for stripped-envelope core-collapse supernovae
arXiv:1908.06190 · doi:10.3847/1538-4357/ab6227
Abstract
Several on-going or planned synoptic optical surveys are offering or will soon be offering an unprecedented opportunity for discovering larger samples of the rarest types of stripped-envelope core-collapse supernovae (SNe), such as those associated with relativistic jets, mildly-relativistic ejecta, or strong interaction with the circumstellar medium (CSM). Observations at radio wavelengths are a useful tool to probe the fastest moving ejecta, as well as denser circumstellar environments, and can thus help us identify the rarest type of core-collapse explosions. Here, we discuss how to set up an efficient radio follow-up program to detect and correctly identify radio-emitting stripped-envelope core-collapse explosions. We use a method similar to the one described in \citealt{Carbone2018}, and determine the optimal timing of GHz radio observations assuming a sensitivity comparable to that of the Karl G. Jansky Very Large Array. The optimization is done so as to ensure that the collected radio observations can identify the type of explosion powering the radio counterpart by using the smallest possible amount of telescope time. We also present a previously unpublished upper-limit on the late-time radio emission from supernova iPTF17cw. Finally, we conclude by discussing implications for follow-up in the X-rays.
9 pages, 2 figures, 7 tables, submitted to ApJ
References in corpus (14)
- The Supernova -- Gamma-Ray Burst Connection
- The Zwicky Transient Facility: Science Objectives
- Circumstellar Emission from Type Ib and Ic Supernovae
- An embedded X-ray source shines through the aspherical AT2018cow: revealing the inner workings of the most luminous fast-evolving optical transients
- The Cow: discovery of a luminous, hot and rapidly evolving transient
- Revisiting the Lick Observatory Supernova Search Volume-Limited Sample: Updated Classifications and Revised Stripped-Envelope Supernova Fractions
- Supernova 2006aj and the associated X-Ray Flash 060218
- An upper limit to the energy of gamma-ray bursts indicates that GRB/SNe are powered by magnetars
- Electrons' energy in GRB afterglows implied by radio peaks
- Evidence for Late-stage Eruptive Mass-loss in the Progenitor to SN2018gep, a Broad-lined Ic Supernova: Pre-explosion Emission and a Rapidly Rising Luminous Transient
- SN 2007bg: The Complex Circumstellar Environment Around One of the Most Radio-Luminous Broad-Lined Type Ic Supernovae
- The double-peaked radio light curve of PTF11qcj
- iPTF17cw: An engine-driven supernova candidate discovered independent of a gamma-ray trigger
- Optimized Radio Follow Up of Binary Neutron-Star Mergers