The Fast Blue Optical Transient (FBOT) ATLAS18qqn (AT2018cow) has a light curve as bright as superluminous supernovae but rises and falls much faster. We model this light curve by circumstellar interaction of a pulsational pair-instability (PPI) supernova (SN) model based on our PPISN models studied in previous work. We focus on the 42 M⊙ He star (core of a 80 M⊙ star) which has circumstellar matter of mass 0.50 M⊙. With the parameterized mass cut and the kinetic energy of explosion E, we perform hydrodynamical calculations of nucleosynthesis and optical light curves of PPISN models. The optical light curve of the first ∼ 20 days of AT2018cow is well-reproduced by the shock heating of circumstellar matter for the 42M⊙ He star with E=5×1051 erg. After day 20, the light curve is reproduced by the radioactive decay of 0.6 M⊙56Co, which is a decay product of 56Ni in the explosion. We also examine how the light curve shape depends on the various model parameters, such as CSM structure and composition. We also discuss (1) other possible energy sources and their constraints, (2) origin of observed high-energy radiation, and (3) how our result depends on the radiative transfer codes. Based on our successful model for AT2018cow and the model for SLSN with the CSM mass as large as 20M⊙), we propose the working hypothesis that PPISN produces SLSNe if CSM is massive enough and FBOTs if CSM is less than ∼1M⊙.
@article{arxiv.2008.11404,
title = {A Model for Fast Blue Optical Transient AT2018Cow: Circumstellar Interaction of a Pulsational Pair-instability Supernova},
author = {Shing-Chi Leung and Sergei Blinnikov and Ken'ichi Nomoto and Petr Baklanov and Elena Sorokina and Alexey Tolstov},
journal= {arXiv preprint arXiv:2008.11404},
year = {2021}
}
Comments
17 pages, 31 figures, published in Astrophysical Journal, submitted at 7 February 2020, accepted at 18 September 2020, published at 3 November 2020