paper

Light curve and spectral evolution of the Type IIb SN 2011fu

arXiv:1301.6538 · doi:10.1093/mnras/stt162

Abstract

We present the low-resolution spectroscopic and UBVRI broad-band photometric investigations of the Type IIb supernova 2011fu, discovered in UGC 01626. The photometric follow-up of this event has been initiated a few days after the explosion and covers a period of about 175 days. The early-phase light curve shows a rise followed by steep decay in all bands and shares properties very similar to that seen in case of SN 1993J, with a possible detection of the adiabatic cooling phase. Modelling of the quasi-bolometric light curve suggests that the progenitor had an extended ( cm), low-mass ( ) H-rich envelope on top of a dense, compact ( cm), more massive ( 1.1 ) He-rich core. The nickel mass synthesized during the explosion was found to be 0.21 , slightly larger than seen in case of other Type IIb SNe. The spectral modelling performed with SYNOW suggests that the early-phase line velocities for H and Fe\,{\sc ii} features were km s and km s, respectively. Then the velocities declined up to day +40 and became nearly constant at later epochs.

16 pages, 9 figures, 7 tables, accepted to MNRAS