论文标题

钙富含钙的瞬态SN 2019EHK在星形环境中

Calcium-rich Transient SN 2019ehk in A Star-Forming Environment: Yet Another Candidate for An Ultra-Stripped Envelope Supernova

论文作者

Nakaoka, Tatsuya, Maeda, Keiichi, Yamanaka, Masayuki, Tanaka, Masaomi, Kawabata, Miho, Moriya, Takashi J., Kawabata, Koji S., Tominaga, Nozomu, Takagi, Kengo, Imazato, Fumiya, Morokuma, Tomoki, Sako, Shigeyuki, Ohsawa, Ryou, Nagao, Takashi, Jiang, Ji-an, Burgaz, Umut, Taguchi, Kenta, Uemura, Makoto, Akitaya, Hiroshi, Sasada, Mahito, Isogai, Keisuke, Otsuka, Masaaki, Maehara, Hiroyuki

论文摘要

我们介绍了SN〜IB〜2019EHK的光学和近红外观察。我们表明,它根据其光谱特性和后期的进化而演变为富含CA的瞬态。然而,它显示了一些可区分的特性与富含CA的瞬态:光曲线中的短期第一峰,高峰光度以及与星形形成环境的关联。实际上,其中一些功能与IPTF14GQR和IPTF16HG共享,它们是特殊类别的核心爆发SNE(CCSNE)的候选者:所谓的超级sne sne,即相对低的质量爆炸(或C+O)在Biary as by Biars a as a a by Doubled Neutime by a Doubd by sar belar barar biarar barar bar bar bar bar bar bar bar bar bar a bar bar bar bar bar bar bar bar bar bar bar bar bar bar bar bar bar bar bar b。估计的弹出质量($ 0.43 m_ \ odot $)和爆炸能量($ 1.7 \ times 10^{50} $ 〜ERG)与这种情况一致。对第一个峰的分析表明,祖细胞附近存在着密集的偶然物质,这意味着CCSN起源。基于这些分析,我们建议SN 2019EHK是超脱落信封SN的另一个候选人。这些超脱落的包膜SN候选者似乎在与年轻人口相关的CAICH瞬态中形成了亚群。我们建议区分该人群的关键是其光曲线中的早期第一峰。

We present optical and near-infrared observations of SN~Ib~2019ehk. We show that it evolved to a Ca-rich transient according to its spectral properties and evolution in late phases. It, however, shows a few distinguishable properties from the canonical Ca-rich transients: a short-duration first peak in the light curve, high peak luminosity, and association with a star-forming environment. Indeed, some of these features are shared with iPTF14gqr and iPTF16hgs, which are candidates for a special class of core-collapse SNe (CCSNe): the so-called ultra-stripped envelope SNe, i.e., a relatively low-mass He (or C+O) star explosion in a binary as a precursor of double neutron star binaries. The estimated ejecta mass ($0.43 M_\odot$) and explosion energy ($1.7 \times 10^{50} $~erg) are consistent with this scenario. The analysis of the first peak suggests existence of dense circumstellar material in the vicinity of the progenitor, implying a CCSN origin. Based on these analyses, we suggest SN 2019ehk is another candidate for an ultra-stripped envelope SN. These ultra-stripped envelope SN candidates seem to form a subpopulation among Ca-rich transients, associated with young population. We propose that the key to distinguishing this population is the early first peak in their light curves.

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