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A radio-detected type Ia supernova with helium-rich circumstellar material

Title: A radio-detected type Ia supernova with helium-rich circumstellar material
Authors: Kool, EC; Johansson, J; Sollerman, J; Moldón, J; Moriya, TJ; Mattila, S; Schulze, S; Chomiuk, L; Pérez-Torres, M; Harris, C; Lundqvist, P; Graham, M; Yang, S; Perley, DA; Strotjohann, NL; Fremling, C; Gal-Yam, A; Lezmy, J; Maguire, K; Omand, C; Smith, M; Andreoni, I; Bellm, EC; Bloom, JS; De, K; Groom, SL; Kasliwal, MM; Masci, FJ; Medford, MS; Park, S; Purdum, J; Reynolds, TM; Riddle, R; Robert, E; Ryder, SD; Sharma, Y; Stern, D
Publisher Information: Nature Publishing Group
Publication Year: 2023
Collection: Liverpool John Moores University: LJMU Research Online
Subject Terms: QB Astronomy; QC Physics
Description: Type Ia supernovae (SNe Ia) are thermonuclear explosions of degenerate white dwarf stars destabilized by mass accretion from a companion star 1, but the nature of their progenitors remains poorly understood. A way to discriminate between progenitor systems is through radio observations; a non-degenerate companion star is expected to lose material through winds 2 or binary interaction 3 before explosion, and the supernova ejecta crashing into this nearby circumstellar material should result in radio synchrotron emission. However, despite extensive efforts, no type Ia supernova (SN Ia) has ever been detected at radio wavelengths, which suggests a clean environment and a companion star that is itself a degenerate white dwarf star 4,5. Here we report on the study of SN 2020eyj, a SN Ia showing helium-rich circumstellar material, as demonstrated by its spectral features, infrared emission and, for the first time in a SN Ia to our knowledge, a radio counterpart. On the basis of our modelling, we conclude that the circumstellar material probably originates from a single-degenerate binary system in which a white dwarf accretes material from a helium donor star, an often proposed formation channel for SNe Ia (refs. 6,7). We describe how comprehensive radio follow-up of SN 2020eyj-like SNe Ia can improve the constraints on their progenitor systems.
Document Type: article in journal/newspaper
File Description: text
Language: English
ISSN: 0028-0836
Relation: https://researchonline.ljmu.ac.uk/id/eprint/19964/1/A%20radio-detected%20type%20Ia%20supernova%20with%20helium%20rich%20circumstellar%20material.pdf; Kool, EC ORCID logoorcid:0000-0002-7252-3877 , Johansson, J, Sollerman, J ORCID logoorcid:0000-0003-1546-6615 , Moldón, J ORCID logoorcid:0000-0002-8079-7608 , Moriya, TJ ORCID logoorcid:0000-0003-1169-1954 , Mattila, S, Schulze, S ORCID logoorcid:0000-0001-6797-1889 , Chomiuk, L, Pérez-Torres, M ORCID logoorcid:0000-0001-5654-0266 , Harris, C, Lundqvist, P ORCID logoorcid:0000-0002-3664-8082 , Graham, M ORCID logoorcid:0000-0002-3168-0139 , Yang, S ORCID logoorcid:0000-0002-2898-6532 , Perley, DA ORCID logoorcid:0000-0001-8472-1996 , Strotjohann, NL, Fremling, C ORCID logoorcid:0000-0002-4223-103X , Gal-Yam, A ORCID logoorcid:0000-0002-3653-5598 , Lezmy, J, Maguire, K ORCID logoorcid:0000-0002-9770-3508 , Omand, C ORCID logoorcid:0000-0002-9646-8710 , Smith, M, Andreoni, I ORCID logoorcid:0000-0002-8977-1498 , Bellm, EC ORCID logoorcid:0000-0001-8018-5348 , Bloom, JS, De, K ORCID logoorcid:0000-0002-8989-0542 , Groom, SL ORCID logoorcid:0000-0001-5668-3507 , Kasliwal, MM, Masci, FJ ORCID logoorcid:0000-0002-8532-9395 , Medford, MS, Park, S, Purdum, J, Reynolds, TM, Riddle, R ORCID logoorcid:0000-0002-0387-370X , Robert, E ORCID logoorcid:0000-0002-5339-5996 , Ryder, SD ORCID logoorcid:0000-0003-4501-8100 , Sharma, Y and Stern, D (2023) A radio-detected type Ia supernova with helium-rich circumstellar material. Nature, 617 (7961). pp. 477-482. ISSN 0028-0836
DOI: 10.1038/s41586-023-05916-w
Availability: https://researchonline.ljmu.ac.uk/id/eprint/19964/; https://doi.org/10.1038/s41586-023-05916-w
Rights: cc_by
Accession Number: edsbas.6001BE35
Database: BASE