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Get Free AccessWe present the discovery and analysis of SN\,2022oqm, a Type Ic supernova (SN) detected $<1$\,day after explosion. The SN rises to a blue and short-lived (2\,days) initial peak. Early-time spectral observations of SN\,2022oqm show a hot (40,000\,K) continuum with high-ionization C and O absorption features at velocities of 4000\,km\,s$^{-1}$, while its photospheric radius expands at 20,000\,\kms, indicating a pre-existing distribution of expanding C/O material. After $\sim2.5$\,days, both the spectrum and light curves evolve into those of a typical SN Ic, with line velocities of $\sim10,000$\,km\,s$^{-1}$, in agreement with the photospheric radius evolution. The optical light curves reach a second peak at $t\approx15$\,days. By $t=60$\,days, the spectrum of \oqm\ becomes nearly nebular, displaying strong \ion{Ca}{2} and [\ion{Ca}{2}] emission with no detectable [\ion{O}{1}], marking this event as Ca-rich. The early behavior can be explained by $10^{-3}$\,\msun\ of optically thin circumstellar material (CSM) surrounding either (1) a massive compact progenitor such as a Wolf-Rayet star, (2) a massive stripped progenitor with an extended envelope, or (3) a binary system with a white dwarf. We propose that the early-time light curve is powered by both interaction of the ejecta with the optically thin CSM and shock cooling (in the massive-star scenario). The observations can be explained by CSM that is optically thick to X-ray photons, is optically thick in the lines as seen in the spectra, and is optically thin to visible-light continuum photons that come either from downscattered X-rays or from the shock-heated ejecta. Calculations show that this scenario is self-consistent.
I. Irani, Ping Chen, Jonathan Morag, S. Schulze, A. Gal-Yam, N. L. Strotjohann, O. Yaron, Earl A. Zimmerman, Amir Sharon, D. A. Perley, J. Sollerman, A. Tohuvavohu, Kaustav K. Das, M. M. Kasliwal, R. Bruch, Thomas G. Brink, WeiKang Zheng, Kishore C. Patra, Sergiy S. Vasylyev, Alexei V Filippenko, Yi Yang, M. J. Graham, J. S. Bloom, Josiah Purdum, Russ R. Laher, Avery Wold, Y. Sharma, Leander Lacroix (2022). SN 2022oqm -- a Ca-rich explosion of a compact progenitor embedded in C/O circumstellar material. , DOI: https://doi.org/10.48550/arxiv.2210.02554.
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Type
Preprint
Year
2022
Authors
28
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.48550/arxiv.2210.02554
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