Discovery of the Fastest Early Optical Emission from Overluminous SN Ia 2020hvf: A Thermonuclear Explosion within a Dense Circumstellar Environment

In this Letter we report a discovery of a prominent flash of a peculiar overluminous Type Ia supernova, SN 2020hvf, in about 5 hr of the supernova explosion by the first wide-field mosaic CMOS sensor imager, the Tomo-e Gozen Camera. The fast evolution of the early flash was captured by intensive int...

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Veröffentlicht in:Astrophysical journal. Letters 2021-12, Vol.923 (1), p.L8
Hauptverfasser: Jiang, Ji-an, Maeda, Keiichi, Kawabata, Miho, Doi, Mamoru, Shigeyama, Toshikazu, Tanaka, Masaomi, Tominaga, Nozomu, Nomoto, Ken’ichi, Niino, Yuu, Sako, Shigeyuki, Ohsawa, Ryou, Schramm, Malte, Yamanaka, Masayuki, Kobayashi, Naoto, Takahashi, Hidenori, Nakaoka, Tatsuya, Kawabata, Koji S., Isogai, Keisuke, Aoki, Tsutomu, Kondo, Sohei, Mori, Yuki, Arimatsu, Ko, Kasuga, Toshihiro, Okumura, Shin-ichiro, Urakawa, Seitaro, Reichart, Daniel E., Taguchi, Kenta, Arima, Noriaki, Beniyama, Jin, Uno, Kohki, Hamada, Taisei
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Sprache:eng
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Zusammenfassung:In this Letter we report a discovery of a prominent flash of a peculiar overluminous Type Ia supernova, SN 2020hvf, in about 5 hr of the supernova explosion by the first wide-field mosaic CMOS sensor imager, the Tomo-e Gozen Camera. The fast evolution of the early flash was captured by intensive intranight observations via the Tomo-e Gozen high-cadence survey. Numerical simulations show that such a prominent and fast early emission is most likely generated from an interaction between 0.01 M ⊙ circumstellar material (CSM) extending to a distance of ∼10 13 cm and supernova ejecta soon after the explosion, indicating a confined dense CSM formation at the final evolution stage of the progenitor of SN 2020hvf. Based on the CSM–ejecta interaction-induced early flash, the overluminous light curve, and the high ejecta velocity of SN 2020hvf, we suggest that the SN 2020hvf may originate from a thermonuclear explosion of a super-Chandrasekhar-mass white dwarf (“super- M Ch WD”). Systematical investigations on explosion mechanisms and hydrodynamic simulations of the super- M Ch WD explosion are required to further test the suggested scenario and understand the progenitor of this peculiar supernova.
ISSN:2041-8205
2041-8213
DOI:10.3847/2041-8213/ac375f