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Get Free AccessAbstract We present extensive photometric and spectroscopic observations of the nearby Type Ia supernova (SN) 2023wrk at a distance of about 40 Mpc. The earliest detection of this SN can be traced back to a few hours after the explosion. Within the first few days, the light curve shows a bump feature, while the B − V color is blue and remains nearly constant. The overall spectral evolution is similar to that of an SN 1991T/SN 1999aa-like SN Ia, while the C ii λ 6580 absorption line appears to be unusually strong in the first spectrum taken at t ≈ −15.4 days after the maximum light. This carbon feature disappears quickly in subsequent evolution but it reappears at around the time of peak brightness. The complex evolution of the carbon line and the possible detection of Ni iii absorption around 4700 Å and 5300 Å in the earliest spectra indicate macroscopic mixing of fuel and ash. The strong carbon lines are likely related to the collision of SN ejecta with unbound carbon, consistent with the predictions of pulsational delayed-detonation or carbon-rich circumstellar-matter interaction models. Among those carbon-rich SNe Ia with strong C ii λ 6580 absorption at very early times, the line-strength ratio of C ii to Si ii and the B − V color evolution are found to exhibit large diversity, which may be attributed to different properties of unbound carbon and outward-mixing 56 Ni.
Jialian Liu, Xiaofeng Wang, Cristina Andrade, Pierre-Alexandre Duverne, Jujia Zhang, Liping Li, Zhenyu Wang, Felipe Navarete, A. Reguitti, S. Schuldt, Yongzhi Cai, Alexei V Filippenko, Yi Yang, Thomas G. Brink, WeiKang Zheng, Ali Esamdin, Abdusamatjan Iskandar, Chunhai Bai, Jinzhong Liu, Xin Li, Maokai Hu, Gaici Li, Wenxiong Li, Xiaoran Ma, Shengyu Yan, Jun Mo, C. Adami, Dalya Akl, S. Antier, E. Broens, J.-G. Ducoin, E. G. Elhosseiny, Thomas M. Esposito, M Freeberg, Priya Gokulass, Patrice Hello, С. Карпов, I. Márquez, M. Mašek, O. Pyshna, Y Rajabov, Denis Saint-Gelais, Marc Serrau, Oleksii Sokoliuk, A. Takey, Manasanun Tanasan, D. Turpin (2024). Early-time Observations of SN 2023wrk: A Luminous Type Ia Supernova with Significant Unburned Carbon in the Outer Ejecta. , 973(2), DOI: https://doi.org/10.3847/1538-4357/ad6600.
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Type
Article
Year
2024
Authors
47
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.3847/1538-4357/ad6600
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