English

Optical and spectral observations and hydrodynamic modelling of Type IIb Supernova 2017gpn

High Energy Astrophysical Phenomena 2021-04-15 v3

Abstract

In this work we present the photometric and spectroscopic observations of Type IIb Supernova 2017gpn. This supernova was discovered in the error-box of LIGO/Virgo G299232 gravitational-wave event. We obtained the light curves in B and R passbands and modelled them numerically using the one-dimensional radiation hydrocode STELLA. The best-fit model has the following parameters: the pre-SN star mass and the radius are 3.5 Msun and 50 Rsun, respectively; the explosion energy is Eexp = 1.2 * 10^51 erg; the mass of radioactive nickel is M56Ni =0.11 Msun, which is totally mixed through the ejecta, the mass of the hydrogen envelope 0.06 Msun. Moreover, SN 2017gpn is a confirmed SN IIb that is located at the farthest distance from the center of its host galaxy NGC 1343 (i.e. the projected distance is about 21 kpc). This challenges the scenario of the origin of Type IIb Supernovae from massive stars.

Keywords

Cite

@article{arxiv.2008.07934,
  title  = {Optical and spectral observations and hydrodynamic modelling of Type IIb Supernova 2017gpn},
  author = {Elena A. Balakina and Maria V. Pruzhinskaya and Alexander S. Moskvitin and Sergei I. Blinnikov and Xiaofeng Wang and Danfeng Xiang and Han Lin and Liming Rui and Huijuan Wang},
  journal= {arXiv preprint arXiv:2008.07934},
  year   = {2021}
}

Comments

18 pages, 13 figures