{"about":{"site":"https://codewithpapers.app","non_affiliation":"Code with Papers and Syntology are not affiliated with, endorsed by, or sponsored by Papers with Code, Meta, or the pwc-archive mirror.","licence":"CC BY-SA 4.0","licence_url":"https://creativecommons.org/licenses/by-sa/4.0/legalcode","attribution":"https://codewithpapers.app/attribution","modified":"archive material modified by Syntology; see the attribution page"},"url":"/paper/physical-properties-of-type-ii-supernovae","title":"Physical Properties of Type II Supernovae Inferred from ZTF and ATLAS Photometric Data","arxiv_id":"2404.12620","date":"2024-04-19","proceeding":null,"authors":["Javier Silva-Farfán","Francisco Förster","Takashi J. Moriya","L. Hernández-García","A. M. Muñoz Arancibia","P. Sánchez-Sáez","Joseph P. Anderson","John L. Tonry","Alejandro Clocchiatti"],"abstract":"We report an analysis of a sample of 186 spectroscopically confirmed Type II supernova (SN) light curves (LCs) obtained from a combination of Zwicky Transient Facility (ZTF) and Asteroid Terrestrial-impact Last Alert System (ATLAS) observations. We implement a method to infer physical parameters from these LCs using hydrodynamic models that take into account the progenitor mass, the explosion energy, and the presence of circumstellar matter (CSM). The CSM is modelled via the mass loss rate, wind acceleration at the surface of the progenitor star with a $\\beta$ velocity law, and the CSM radius. We also infer the time of explosion, attenuation (A$_V$), and the redshift for each SN. Our results favor low-mass progenitor stars (M$_{ZAMS}$\\,$<$14\\,$M_\\odot$) with a dense CSM ($\\dot{M}$ $>$ 10$^{-3}$ [M$_\\odot$ yr$^{-1}$], a CSM radius of $\\sim$ 10$^{15}$ cm, and $\\beta$ $>$ 2). Additionally, we find that the redshift inferred from the supernova LCs is significantly more accurate than that inferred using the host galaxy photometric redshift, suggesting that this method could be used to infer more accurate host galaxy redshifts from large samples of SNe II in the LSST era. Lastly, we compare our results with similar works from the literature.","url_abs":"https://arxiv.org/abs/2404.12620v3","url_pdf":"https://arxiv.org/pdf/2404.12620v3.pdf","source":{"archive":"pwc-archive (Hugging Face), CC BY-SA 4.0","snapshot":"2025-07-28","licence_url":"https://creativecommons.org/licenses/by-sa/4.0/legalcode","row_kind":"links_only","authors_date_abstract":"arXiv metadata, CC0 1.0 (https://info.arxiv.org/help/license), from the Kaggle arXiv metadata snapshot of 2026-09-12"},"code_links":[{"paper_slug":"physical-properties-of-type-ii-supernovae","repo_url":"https://github.com/fforster/surveysim","is_official":1,"mentioned_in_paper":1,"mentioned_in_github":0,"framework":"none","reach":{"status":"ok"}}],"tasks":[],"methods":[],"datasets_introduced":[],"methods_introduced":[],"results":[],"syntology":{"syntology_url":"https://syntology.ai/paper/2404.12620","atlas_url":"https://app.syntology.ai/?focus=2404.12620","mcp":{"get_harvested_code_for_paper":{"arxiv_id":"2404.12620"}},"developers":"https://syntology.ai/developers","read_at":"2026-09-25T09:33:49+00:00","read_at_is":"when the build read Syntology's graph, not when any sample ran","claim":"Per-sample execution status on synthesized fixtures; not a correctness claim about the paper. 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