Oxygen and helium in stripped-envelope supernovae
C. Fremling, J. Sollerman, M. M. Kasliwal, S. R. Kulkarni, C., Barbarino, M. Ergon, E. Karamehmetoglu, F. Taddia, I. Arcavi, S. B. Cenko, K., Clubb, A. De Cia, G. Duggan, A. V. Filippenko, A. Gal-Yam, M. L. Graham, A., Horesh, G. Hosseinzadeh, D. A. Howell, D. Kuesters

TL;DR
This study analyzes a large sample of stripped-envelope supernova spectra to compare their spectral features, revealing differences in ejecta velocities and He presence, and concluding that SNe Ic lose He through envelope stripping rather than hiding it.
Contribution
It provides a comprehensive spectral analysis of 507 supernovae, challenging the hypothesis that SNe Ic hide He and supporting the envelope stripping scenario.
Findings
SNe Ic have higher O I pEWs and velocities than SNe IIb and Ib.
He I pEWs are similar in SNe Ib and IIb after maximum light.
SNe Ic ejecta expand faster, implying they lose He through stripping.
Abstract
We present an analysis of 507 spectra of 173 stripped-envelope (SE) supernovae (SNe) discovered by the untargeted Palomar Transient Factory (PTF) and intermediate PTF (iPTF) surveys. Our sample contains 55 Type IIb SNe (SNe IIb), 45 Type Ib SNe (SNe Ib), 56 Type Ic SNe (SNe Ic), and 17 Type Ib/c SNe (SNe Ib/c). We compare the SE SN subtypes via measurements of the pseudo-equivalent widths (pEWs) and velocities of the He I and O I absorption lines. Consistent with previous work, we find that SNe Ic show higher pEWs and velocities in O I compared to SNe IIb and Ib. The pEWs of the He I lines are similar in SNe Ib and IIb after maximum light. The He I velocities at maximum light are higher in SNe Ib compared to SNe IIb. We have identified an anticorrelation between the He I…
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