SN2019dge: a Helium-rich Ultra-Stripped Envelope Supernova
Abstract
We present observations of ZTF18abfcmjw (SN2019dge), a helium-rich supernova with a fast-evolving light curve indicating an extremely low ejecta mass () and low kinetic energy (). Early-time (<4 d after explosion) photometry reveal evidence of shock cooling from an extended helium-rich envelope of located at from the progenitor. Early-time He II line emission and subsequent spectra show signatures of interaction with helium-rich circumstellar material, which extends from to . We interpret SN2019dge as a helium-rich supernova from an ultra-stripped progenitor, which originates from a close binary system consisting of a mass-losing helium star and a low-mass main sequence star or a compact object (i.e., a white dwarf, a neutron star, or a black hole). We infer that the local volumetric birth rate of 19dge-like ultra-stripped SNe is in the range of 1400--8200 (i.e., 2--12% of core-collapse supernova rate). This can be compared to the observed coalescence rate of compact neutron star binaries that are not formed by dynamical capture.
Keywords
Cite
@article{arxiv.2005.12922,
title = {SN2019dge: a Helium-rich Ultra-Stripped Envelope Supernova},
author = {Yuhan Yao and Kishalay De and Mansi M. Kasliwal and Anna Y. Q. Ho and Steve Schulze and Zhihui Li and S. R. Kulkarni and Andrew Fruchter and David Rubin and Daniel A. Perley and Jim Fuller and C. Fremling and Eric C. Bellm and Rick Burruss and Dmitry A. Duev and Michael Feeney and Avishay Gal-Yam and V. Zach Golkhou and Matthew J. Graham and George Helou and Thomas Kupfer and Russ R. Laher and Frank J. Masci and Adam A. Miller and Anthony L. Piro and Ben Rusholme and David L. Shupe and Roger Smith and Jesper Sollerman and Maayane T. Soumagnac and Jeffry Zolkower},
journal= {arXiv preprint arXiv:2005.12922},
year = {2020}
}
Comments
29 pages, 23 figures, submitted to ApJ