Unprecedented Early Flux Excess in the Hybrid 02es-like Type Ia Supernova 2022ywc Indicates Interaction with Circumstellar Material

Author:

Srivastav ShubhamORCID,Moore T.ORCID,Nicholl M.ORCID,Magee M. R.ORCID,Smartt S. J.ORCID,Fulton M. D.ORCID,Sim S. A.ORCID,Pollin J. M.ORCID,Galbany L.ORCID,Inserra C.ORCID,Kozyreva A.ORCID,Moriya Takashi J.ORCID,Callan F. P.ORCID,Sheng X.ORCID,Smith K. W.ORCID,Sommer J. S.ORCID,Anderson J. P.ORCID,Deckers M.ORCID,Gromadzki M.ORCID,Müller-Bravo T. E.ORCID,Pignata G.ORCID,Rest A.ORCID,Young D. R.ORCID

Abstract

Abstract We present optical photometric and spectroscopic observations of the 02es-like type Ia supernova (SN) 2022ywc. The transient occurred in the outskirts of an elliptical host galaxy and showed a striking double-peaked light curve with an early excess feature detected in the ATLAS orange and cyan bands. The early excess is remarkably luminous with an absolute magnitude ∼ − 19, comparable in luminosity to the subsequent radioactively driven second peak. The spectra resemble the hybrid 02es-like SN 2016jhr, which is considered to be a helium shell detonation candidate. We investigate different physical mechanisms that could power such a prominent early excess and rule out massive helium shell detonation, surface 56Ni distribution, and ejecta–companion interaction. We conclude that SN ejecta interacting with circumstellar material (CSM) is the most viable scenario. Semianalytical modeling with MOSFiT indicates that SN ejecta interacting with ∼0.05 M of CSM at a distance of ∼1014 cm can explain the extraordinary light curve. A double-degenerate scenario may explain the origin of the CSM, by tidally stripped material from either the secondary white dwarf or disk-originated matter launched along polar axes following the disruption and accretion of the secondary white dwarf. A nonspherical CSM configuration could suggest that a small fraction of 02es-like events viewed along a favorable line of sight may be expected to display a very conspicuous early excess like SN 2022ywc.

Funder

UKRI ∣ Science and Technology Facilities Council

National Aeronautics and Space Administration

EC ∣ ERC ∣ HORIZON EUROPE European Research Council

MEC ∣ Agencia Estatal de Investigación

EC ∣ EU Social ∣ European Social Fund

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. SN 2022vqz: a peculiar subluminous Type Ia supernova with prominent early excess emission;Monthly Notices of the Royal Astronomical Society;2023-11-29

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