English

SN 2016B a.k.a ASASSN-16ab: a transitional type II supernova

High Energy Astrophysical Phenomena 2019-05-01 v1

Abstract

We present photometry, polarimetry and spectroscopy of the Type II supernova ASASSN-16ab/SN 2016B in PGC 037392. The photometric and spectroscopic follow-up commenced about two weeks after shock breakout and continued until nearly six months. The light curve of SN 2016B exhibits intermediate properties between those of Type IIP and IIL. The early decline is steep (1.68 ±\pm 0.10 mag 100 d1^{-1}), followed by a shallower plateau phase (0.47 ±\pm 0.24 mag 100 d1^{-1}). The optically thick phase lasts for 118 d, similar to Type IIP. The 56^{56}Ni mass estimated from the radioactive tail of the bolometric light curve is 0.082 ±\pm 0.019 M_\odot. High velocity component contributing to the absorption trough of Hα\alpha and Hβ\beta in the photospheric spectra are identified from the spectral modelling from about 57 - 97 d after the outburst, suggesting a possible SN ejecta and circumstellar material interaction. Such high velocity features are common in the spectra of Type IIL supernovae. By modelling the true bolometric light curve of SN 2016B, we estimated a total ejected mass of \sim15 M_\odot, kinetic energy of \sim1.4 foe and an initial radius of \sim400 R_\odot.

Keywords

Cite

@article{arxiv.1904.01844,
  title  = {SN 2016B a.k.a ASASSN-16ab: a transitional type II supernova},
  author = {Raya Dastidar and Kuntal Misra and Mridweeka Singh and D. K. Sahu and A. Pastorello and Anjasha Gangopadhyay and L. Tomasella and S. Benetti and G. Terreran and Pankaj Sanwal and Brijesh Kumar and Avinash Singh and Brajesh Kumar and G. C. Anupama and S. B. Pandey},
  journal= {arXiv preprint arXiv:1904.01844},
  year   = {2019}
}

Comments

16 pages, 4 pages Appendix, 20 figures, 8 tables, Accepted for publication in MNRAS, 01-April-2019

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