English

SN 2012ij: A low-luminosity type Ia supernova and evidence for continuous distribution from 91bg-like explosion to normal ones

High Energy Astrophysical Phenomena 2022-03-14 v1

Abstract

In this paper, we present photometric and spectroscopic observations of a subluminous type Ia supernova (SN Ia) 2012ij, which has an absolute BB-band peak magnitude MB,maxM_{B,\rm{max}} = -17.95 ±\pm 0.15 mag. The BB-band light curve exhibits a fast post-peak decline with Δm15(B)\Delta m_{15}(B) = 1.86 ±\pm 0.05 mag. All the RR and II/ii-band light curves show a weak secondary peak/shoulder feature at about 3 weeks after the peak, like some transitional subclass of SNe Ia, which could result from an incomplete merger of near-infrared (NIR) double peaks. The spectra are characterized by Ti~{\sc ii} and strong Si~{\sc ii} λ\lambda5972 absorption features that are usually seen in low-luminosity objects like SN 1999by. The NIR spectrum before maximum light reveals weak carbon absorption features, implying the existence of unburned materials. We compare the observed properties of SN 2012ij with those predicted by the sub-Chandrasekhar-mass and the Chandrasekhar-mass delayed-detonation models, and find that both optical and NIR spectral properties can be explained to some extent by these two models. By comparing the secondary maximum features in II and ii bands, we suggest that SN 2012ij is a transitional object linking normal SNe Ia to typical 91bg-like ones. From the published sample of SNe Ia from the Carnegie Supernova Project IICarnegie~Supernova~Project~II (CSP-II), we estimate that the fraction of SN 2012ij-like SNe Ia is not lower than \sim 2%.

Keywords

Cite

@article{arxiv.2201.06066,
  title  = {SN 2012ij: A low-luminosity type Ia supernova and evidence for continuous distribution from 91bg-like explosion to normal ones},
  author = {Zhitong Li and Tianmeng Zhang and Xiaofeng Wang and Hanna Sai and Jujia Zhang and Juncheng Chen and Xulin Zhao and Shengyu Yan and Bo Wang and Mark M. Phillips and Eric Y. Hsiao and Nidia Morrell and Carlos Contreras and Christopher R. Burns and Christopher Ashall and Maximilian Stritzinger and Kevin Krisciunas and Jose Prieto and Hu Zou and Jiali Wang and Jun Ma and Jundan Nie and Suijian Xue and Xu Zhou and Zhimin Zhou and Danfeng Xiang and Gaobo Xi},
  journal= {arXiv preprint arXiv:2201.06066},
  year   = {2022}
}