The low-luminosity type II SN\,2016aqf: A well-monitored spectral evolution of the Ni/Fe abundance ratio
Tom\'as E. M\"uller-Bravo, Claudia P. Guti\'errez, Mark Sullivan,, Anders Jerkstrand, Joseph P. Anderson, Santiago Gonz\'alez-Gait\'an, Jesper, Sollerman, Iair Arcavi, Jamison Burke, Llu\'is Galbany, Avishay Gal-Yam,, Mariusz Gromadzki, Daichi Hiramatsu, Griffin Hosseinzadeh

TL;DR
This study presents detailed spectral and photometric analysis of the low-luminosity Type II supernova SN 2016aqf, measuring its Ni/Fe abundance ratio over time to understand progenitor characteristics and explosion mechanisms.
Contribution
First detailed measurement of Ni/Fe abundance ratio evolution in a low-luminosity Type II supernova, linking spectral features to progenitor and explosion properties.
Findings
Measured Ni/Fe ratio remains constant at ~0.081 over 200-300 days.
Estimated progenitor zero-age main-sequence mass of 12 ± 3 solar masses.
No clear correlation found between Ni/Fe ratio and other supernova parameters.
Abstract
Low-luminosity type II supernovae (LL SNe~II) make up the low explosion energy end of core-collapse SNe, but their study and physical understanding remain limited. We present SN\,2016aqf, a LL SN~II with extensive spectral and photometric coverage. We measure a -band peak magnitude of \,mag, a plateau duration of 100\,days, and an inferred Ni mass of \,\msun. The peak bolometric luminosity, L\,erg\,s, and its spectral evolution is typical of other SNe in the class. Using our late-time spectra, we measure the [\ion{O}{i}] lines, which we compare against SN II spectral synthesis models to constrain the progenitor zero-age main-sequence mass. We find this to be 12 3\,\msun. Our extensive late-time spectral coverage of the [\ion{Fe}{ii}] and [\ion{Ni}{ii}]…
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