An extremely energetic supernova from a very massive star in a dense medium
Abstract
The interaction of a supernova with a circumstellar medium (CSM) can dramatically increase the emitted luminosity by converting kinetic energy to thermal energy. In 'superluminous' supernovae (SLSNe) of Type IIn -- named for narrow hydrogen lines in their spectra -- the integrated emission can reach erg, attainable by thermalising most of the kinetic energy of a conventional SN. A few transients in the centres of active galaxies have shown similar spectra and even larger energies, but are difficult to distinguish from accretion onto the supermassive black hole. Here we present a new event, SN2016aps, offset from the centre of a low-mass galaxy, that radiated erg, necessitating a hyper-energetic supernova explosion. We find a total (SN ejecta CSM) mass likely exceeding 50-100 M, with energy erg, consistent with some models of pair-instability supernovae (PISNe) or pulsational PISNe -- theoretically-predicted thermonuclear explosions from helium cores M. Independent of the explosion mechanism, this event demonstrates the existence of extremely energetic stellar explosions, detectable at very high redshifts, and provides insight into dense CSM formation in the most massive stars.
Cite
@article{arxiv.2004.05840,
title = {An extremely energetic supernova from a very massive star in a dense medium},
author = {Matt Nicholl and Peter K. Blanchard and Edo Berger and Ryan Chornock and Raffaella Margutti and Sebastian Gomez and Ragnhild Lunnan and Adam A. Miller and Wen-fai Fong and Giacomo Terreran and Alejandro Vigna-Gomez and Kornpob Bhirombhakdi and Allyson Bieryla and Pete Challis and Russ R. Laher and Frank J. Masci and Kerry Paterson},
journal= {arXiv preprint arXiv:2004.05840},
year = {2020}
}
Comments
Published in Nature Astronomy, 13 April 2020