Low-luminosity Type IIP Supernova 2016bkv with early-phase circumstellar interaction
Tatsuya Nakaoka, Koji S. Kawabata, Keiichi Maeda, Masaomi Tanaka,, Masayuki Yamanaka, Takashi J. Moriya, Nozomu Tominaga, Tomoki Morokuma,, Katsutoshi Takaki, Miho Kawabata, Naoki Kawahara, Ryosuke Itoh, Kensei Shiki,, Hiroki Mori, Jun Hirochi, Taisei Abe, Makoto Uemura

TL;DR
This study presents detailed observations of the low-luminosity Type IIP supernova 2016bkv, revealing an extended plateau, low ejecta velocities, and evidence of significant circumstellar interaction, suggesting a violent pre-supernova mass loss event.
Contribution
First detailed analysis of SN 2016bkv showing early circumstellar interaction and its implications for progenitor mass loss.
Findings
Extended plateau phase over 140 days.
Lowest line velocities among LL SNe IIP.
Evidence of strong ejecta-CSM interaction.
Abstract
We present optical and near-infrared observations of a low-luminosity Type IIP supernova (SN) 2016bkv from the initial rising phase to the plateau phase. Our observations show that the end of the plateau is extended to days since the explosion, indicating that this SN takes one of the longest time to finish the plateau phase. among Type IIP SNe (SNe IIP), including low-luminosity (LL) SNe IIP. The line velocities of various ions at the middle of the plateau phase are as low as 1,000--1,500 km s, which is the lowest even among LL SNe IIP. These measurements imply that the ejecta mass in SN 2016bkv is larger than that of the well-studied LL IIP SN 2003Z. In the early phase, SN 2016bkv shows a strong bump in the light curve. In addition, the optical spectra in this bump phase exhibit a blue continuum accompanied with a narrow H emission line. These features…
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