Journal article
ZTF SN Ia DR2: Secondary maximum in type Ia supernovae
Astronomy and astrophysics (Berlin), v 694, 12
14 Feb 2025
Abstract
Type Ia supernova (SN Ia) light curves have a secondary maximum that exists in the r, i, and near-infrared filters. The secondary maximum is relatively weak in the r band, but holds the advantage that it is accessible, even at high redshift. We used Gaussian process fitting to parameterise the light curves of 893 SNe Ia from the Zwicky Transient Facility's (ZTF) second data release (DR2), and we were able to extract information about the timing and strength of the secondary maximum. We found > 5 sigma correlations between the light curve dec rate (Delta m(15)(g)) and the timing and strength of the secondary maximum in the r band. Whilst the timing of the secondary maximum in the i band is also correlated with Delta m(15)(g), the strength of the secondary maximum in the i band shows significant scatter as a function of Delta m(15)(g). We found that the transparency timescales of 97 per cent of our sample are consistent with double detonation models and that SNe Ia with small transparency timescales (< 32 d) reside predominantly in locally red environments. We measured the total ejected mass for the normal SNe Ia in our sample using two methods and both were consistent with medians of 1.3 +/- 0.3 and 1.2 +/- 0.2 M-circle dot. We find that the strength of the secondary maximum is a better standardisation parameter than the SALT light curve stretch (x(1)). Finally, we identified a spectral feature in the r band as Fe II, which strengthens during the onset of the secondary maximum. The same feature begins to strengthen at < 3 d post maximum light in 91bg-like SNe. Finally, the correlation between x1 and the strength of the secondary maximum was best fit with a broken, with a split at x(1)(0) = - 0.5 +/- 0.2, suggestive of the existence of two populations of SNe Ia.
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Details
- Title
- ZTF SN Ia DR2: Secondary maximum in type Ia supernovae
- Creators
- M. Deckers - Trinity College DublinK. Maguire - Trinity College DublinL. Shingles - GSI Helmholtz Centre for Heavy Ion ResearchG. Dimitriadis - Lancaster UniversityM. Rigault - Université Claude Bernard Lyon 1M. Smith - Lancaster UniversityA. Goobar - Stockholm UniversityJ. Nordin - Humboldt-Universität zu BerlinJ. Johansson - Stockholm UniversityM. Amenouche - Herzberg Institute of AstrophysicsU. Burgaz - Trinity College DublinS. Dhawan - University of CambridgeM. Ginolin - Université Claude Bernard Lyon 1L. Harvey - Trinity College DublinW. D. Kenworthy - Stockholm UniversityY. -l. Kim - Lancaster UniversityR. R. Laher - Infrared Processing and Analysis CenterN. Luo - Trinity College DublinS. R. Kulkarni - California Institute of TechnologyF. J. Masci - Infrared Processing and Analysis CenterL. Galbany - Institute of Space SciencesT. E. Muller-Bravo - Institute of Space SciencesP. E. Nugent - Lawrence Berkeley National LaboratoryN. Pletskova - Drexel UniversityJ. Purdum - California Institute of TechnologyB. Racine - Aix-Marseille UniversitéJ. Sollerman - Stockholm UniversityJ. H. Terwel - Trinity College Dublin
- Publication Details
- Astronomy and astrophysics (Berlin), v 694, 12
- Publisher
- Edp Sciences S A
- Number of pages
- 18
- Grant note
- 890695 / Marie Curie Individual Fellowship; European Union (EU) Lawrence Berkeley National Laboratories; United States Department of Energy (DOE) 885281 / European Research Council (ERC); Instituto Politecnico Nacional - Mexico IPAC 759194 / European Research Council (ERC) under the European Union; European Research Council (ERC) AST-1440341; AST-2034437; 1106171 / National Science Foundation; National Science Foundation (NSF) Oskar Klein Center at Stockholm University CEX2020-001058-M / Program Unidad de Excelencia Maria de Maeztu Caltech 20215AT016 / Centro Superior de Investigaciones Cientificas (CSIC); Consejo Superior de Investigaciones Cientificas (CSIC)
- Resource Type
- Journal article
- Language
- English
- Academic Unit
- Physics
- Web of Science ID
- WOS:001421982100001
- Scopus ID
- 2-s2.0-85218163565
- Other Identifier
- 991022197394504721