SN 2022joj: A Peculiar Type Ia Supernova Possibly Driven by an Asymmetric Helium-shell Double Detonation
Chang Liu, Adam A. Miller, Samuel J. Boos, Ken J. Shen, Dean M., Townsley, Steve Schulze, Luke Harvey, Kate Maguire, Joel Johansson, Thomas G., Brink, Umut Burgaz, Georgios Dimitriadis, Alexei V. Filippenko, Saarah Hall,, K-Ryan Hinds, Andrew Hoffman, Viraj Karambelkar

TL;DR
SN 2022joj is a peculiar Type Ia supernova with unusual spectral and color features, likely caused by an asymmetric helium-shell double detonation on a sub-Chandrasekhar mass white dwarf, challenging existing models.
Contribution
This study presents detailed observations of SN 2022joj and proposes a helium-shell double detonation model with asymmetry, highlighting discrepancies with existing theories.
Findings
Unusual red early-time color and rapid blueward evolution.
Spectroscopic features suggestive of helium-shell double detonation.
Evidence of asymmetry in the ejecta from nebular spectra.
Abstract
We present observations of SN 2022joj, a peculiar Type Ia supernova (SN Ia) discovered by the Zwicky Transient Facility (ZTF). SN 2022joj exhibits an unusually red color at early times and a rapid blueward evolution afterward. Around maximum brightness, SN 2022joj shows a high luminosity ( mag), a blue broadband color ( mag), and shallow Si II absorption lines, consistent with those of overluminous, SN 1991T-like events. The maximum-light spectrum also shows prominent absorption around 4200 \r{A}, which resembles the Ti II features in subluminous, SN 1991bg-like events. Despite the blue optical-band colors, SN 2022joj exhibits extremely red ultraviolet minus optical colors at maximum luminosity ( mag and mag), suggesting a suppression of…
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Taxonomy
TopicsGamma-ray bursts and supernovae · Astrophysical Phenomena and Observations · Astrophysics and Cosmic Phenomena
