SN 2022vqz: A Peculiar Subluminous Type Ia Supernova with Prominent Early Excess Emission
Gaobo Xi, Xiaofeng Wang, Gaici Li, Jialian Liu, Shengyu Yan, Weili, Lin, Jieming Zhao, Alexei V. Filippenko, Weikang Zheng, Thomas G. Brink, Y., Yang, Shuhrat A. Ehgamberdiev, Davron Mirzaqulov, Andrea Reguitti, Andrea, Pastorello, Lina Tomasella, Yongzhi Cai, Jujia Zhang

TL;DR
SN 2022vqz is a peculiar, subluminous Type Ia supernova with unique spectral and light curve features, including early excess emission, challenging existing explosion models and suggesting a hybrid white dwarf progenitor.
Contribution
This study provides detailed observations of SN 2022vqz, highlighting its peculiar properties and proposing a novel hybrid white dwarf progenitor model to explain its features.
Findings
Low nickel mass (~0.20 M_sun) indicating a lower-energy explosion
Persistent Si II velocities around 7000 km/s for over two weeks
Presence of early excess emission in multiple bands
Abstract
We present extensive photometric and spectroscopic observations of the peculiar Type Ia supernova (SN Ia) 2022vqz. It shares many similarities with the SN 2002es-like SNe Ia, such as low luminosity ( mag) and moderate post-peak decline rate ( mag). The nickel mass synthesised in the explosion is estimated as from the bolometric light curve, which is obviously lower than that of normal SNe Ia. SN 2022vqz is also characterised by slowly expanding ejecta, with Si II velocities persisting around 7000 km s since 16 days before peak brightness, unique among all known SNe Ia. While all of these properties imply a lower-energy thermonuclear explosion that should leave a considerable amount of unburnt materials, the absent signature of unburnt carbon in spectra of SN 2022vqz is puzzling. A prominent…
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Taxonomy
TopicsGamma-ray bursts and supernovae
