Type IIn Supernova Light Curves Powered by Forward and Reverse Shocks
arXiv:1907.05166 · doi:10.3847/1538-4357/ab40ba
Abstract
We present a bolometric light curve model of Type IIn supernovae powered by supernova ejecta colliding with a circumstellar medium. We estimate the conversion efficiency of the ejecta's kinetic energy to radiation at the reverse and forward shocks and find that a large density contrast makes a difference in the efficiency. The emission from the reverse shock can maintain high efficiency for a long time, and becomes important at the late phase of the light curve. We first construct a semi-analytical model that is applicable to the late phase of the light curve when the diffusion time of photons in the shocked region becomes negligible. We further develop radiation transfer simulations that incorporate these physical processes into the light curve. The numerical calculations predict light curves at early phases, which are testable by present and future short-cadence surveys. We compare our model with the bolometric light curve constructed from observations for a type IIn supernova 2005ip. Due to the reduced efficiency at the forward shock, we find from our model that the mass-loss rate of the progenitor star was for a wind velocity of , an order of magnitude higher compared to previous work that used simple assumptions of the efficiency. This highlights the importance of taking these two components into account when extracting the physical parameters from observations.
18 pages, 8 figures. Minor fix in Fig 4 and corresponding text, results unchanged. Accepted by ApJ
References in corpus (7)
- The Zwicky Transient Facility: Science Objectives
- Pulsational pair instability as an explanation for the most luminous supernovae
- Numerical simulations of super-luminous supernovae of type IIn
- Numerical models of collisions between core-collapse supernovae and circumstellar shells
- Mass loss of massive stars near the Eddington luminosity by core neutrino emission shortly before their explosion
- Supernova PTF12glz: a possible shock breakout driven through an aspherical wind
- The Type IIn Supernova 2010bt: The Explosion of a Star in Outburst
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