arXiv Analytics

Sign in

arXiv:2206.03518 [astro-ph.HE]AbstractReferencesReviewsResources

Models of Millimeter and Radio Emission from Interacting Supernovae

Nitika Yadlapalli, Vikram Ravi, Anna Y. Q. Ho

Published 2022-06-07Version 1

This work utilizes established models of synchrotron-powered light curves for core-collapse supernovae in dense circumstellar environments, namely type IIn and Ibn, to demonstrate the potential for detecting millimeter emission from these events. The progenitor types of these supernovae are still an open question, but using the synchrotron light curves as probes for the circumstellar environments could shed light on the mass-loss histories of the progenitors and discern between different theories. Observations in millimeter bands are particularly fruitful, as they probe regions at smaller radii and higher ambient densities, where centimeter emission tends to be self-absorbed. In our application of these light curves, we explore a diversity of progenitor types and mass-loss profiles to understand their effects on the light curve shapes. Additionally, we fit model parameters to the 8\,GHz light curve of type IIn supernova 2006jd and then create millimeter light curves using these parameters to show the possibility of detecting an early millimeter peak from such an event. We predict that next generation millimeter surveys will possess the capability to detect nearby and extreme events. However, there is a pressing need for millimeter follow-up of optically discovered interacting supernovae to more completely sample the true population.

Comments: 12 pages, 6 figures, accepted for publication in ApJ
Categories: astro-ph.HE
Related articles: Most relevant | Search more
arXiv:1105.4291 [astro-ph.HE] (Published 2011-05-21, updated 2012-02-14)
The structure of the jet in Cyg X-1 inferred from orbital modulation of the radio emission
arXiv:1706.08613 [astro-ph.HE] (Published 2017-06-26)
Detection of radio emission from the gamma-ray pulsar J1732-3131 at 327 MHz
arXiv:2312.17239 [astro-ph.HE] (Published 2023-12-28)
Interacting supernovae as high-energy multimessenger transients