Metallicity from Type II Supernovae from the (i)PTF
F. Taddia, P. Moquist, J. Sollerman, A. Rubin, G. Leloudas, A., Gal-Yam, I. Arcavi, Y. Cao, A. V. Filippenko, M. L. Graham, P. A. Mazzali, P., E. Nugent, Y.-C. Pan, J. M. Silverman, D. Xu, O. Yaron

TL;DR
This study uses observations of Type IIP supernovae from the (i)PTF survey to explore their spectral features as indicators of metallicity, revealing potential low-metallicity supernovae and correlations with brightness.
Contribution
It provides the first analysis of (i)PTF SNe IIP spectra to estimate metallicity distribution, especially identifying low-metallicity events and comparing spectral and host galaxy metallicity indicators.
Findings
Identified 11 supernovae with low metallicity ($\approx 0.1 Z_{\odot}$).
Found a weak correlation between spectral metallicity and host galaxy properties.
Brighter supernovae tend to have lower metallicity and smaller pEW$_{5018}$.
Abstract
Type IIP supernovae (SNe IIP) have recently been proposed as metallicity () probes. The spectral models of Dessart et al. (2014) showed that the pseudo-equivalent width of Fe II 5018 (pEW) during the plateau phase depends on the primordial , but there was a paucity of SNe IIP exhibiting pEW that were compatible with . This lack might be due to some physical property of the SN II population or to the fact that those SNe have been discovered in luminous, metal-rich targeted galaxies. Here we use SN II observations from the untargeted (intermediate) Palomar Transient Factory [(i)PTF] survey, aiming to investigate the pEW distribution of this SN population and, in particular, to look for the presence of SNe II at lower . We perform pEW measurements on the spectra of a sample of 39 (i)PTF SNe II, selected to…
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