English

A nearby superluminous supernova with a long pre-maximum 'plateau' and strong CII features

High Energy Astrophysical Phenomena 2018-12-05 v2

Abstract

Super-luminous supernovae (SLSNe) are rare events defined as being significantly more luminous than normal terminal stellar explosions. The source of the extra powering needed to achieve such luminosities is still unclear. Discoveries in the local Universe (i.e. z<0.1z<0.1) are scarce, but afford dense multi-wavelength observations. Additional low-redshift objects are therefore extremely valuable. We present early-time observations of the type I SLSN ASASSN-18km/SN~2018bsz. These data are used to characterise the event and compare to literature SLSNe and spectral models. Host galaxy properties are also analysed. Optical and near-IR photometry and spectroscopy were analysed. Early-time ATLAS photometry was used to constrain the rising light curve. We identified a number of spectral features in optical-wavelength spectra and tracked their time evolution. Finally, we used archival host galaxy photometry together with HII region spectra to constrain the host environment. ASASSN-18km/SN~2018bsz is found to be a type I SLSN in a galaxy at a redshift of 0.0267 (111 Mpc), making it the lowest-redshift event discovered to date. Strong CII lines are identified in the spectra. Spectral models produced by exploding a Wolf-Rayet progenitor and injecting a magnetar power source are shown to be qualitatively similar to ASASSN-18km/SN~2018bsz, contrary to most SLSNe-I that display weak/non-existent CII lines. ASASSN-18km/SN~2018bsz displays a long, slowly rising, red 'plateau' of >>26 days, before a steeper, faster rise to maximum. The host has an absolute magnitude of --19.8 mag (rr), a mass of M_{*} = 1.50.33+0.08^{+0.08}_{-0.33} ×\times109^{9} M_{\odot} , and a star formation rate of = 0.500.19+2.22^{+2.22}_{-0.19} M_{\odot} yr1^{-1}. A nearby HII region has an oxygen abundance (O3N2) of 8.31±\pm0.01 dex.

Keywords

Cite

@article{arxiv.1806.10609,
  title  = {A nearby superluminous supernova with a long pre-maximum 'plateau' and strong CII features},
  author = {J. P. Anderson and P. J. Pessi and L. Dessart and C. Inserra and D. Hiramatsu and K. Taggart and S. J. Smartt and G. Leloudas and T. -W. Chen and A. Möller and R. Roy and S. Schulze and D. Perley and J. Selsing and S. J. Prentice and A. Gal-Yam and C. R. Angus and I. Arcavi and C. Ashall and M. Bulla and C. Bray and J. Burke and E. Callis and R. Cartier and S. -W. Chang and K. Chambers and P. Clark and L. Denneau and M. Dennefeld and H. Flewelling and M. Fraser and L. Galbany and M. Gromadzki and C. P. Gutiérrez and A. Heinze and G. Hosseinzadeh and D. A. Howell and E. Y. Hsiao and E. Kankare and Z. Kostrzewa-Rutkowska and E. Magnier and K. Maguire and P. Mazzali and O. McBrien and C. McCully and N. Morrell and T. B. Lowe and C. A. Onken and F. Onori and M. M. Phillips and A. Rest and R. Ridden-Harper and A. J. Ruiter and D. J. Sand and K. W. Smith and M. Smith and B. Stalder and M. D. Stritzinger and M. Sullivan and J. L. Tonry and B. E. Tucker and S. Valenti and R. Wainscoat and C. Z. Waters and C. Wolf and D. Young},
  journal= {arXiv preprint arXiv:1806.10609},
  year   = {2018}
}

Comments

Accepted for publication in A&A after minor corrections to first arXiv version