English

SN 2017hpa: A carbon-rich type Ia supernova

Solar and Stellar Astrophysics 2021-03-03 v1 High Energy Astrophysical Phenomena

Abstract

We present the optical (UBVRI) and ultraviolet (Swift-UVOT) photometry, and optical spectroscopy of Type Ia supernova SN 2017hpa. We study broadband UV+optical light curves and low resolution spectroscopy spanning from 13.8-13.8 to +108+108~d from the maximum light in BB-band. The photometric analysis indicates that SN 2017hpa is a normal type Ia with ΔmB(15)=0.98±0.16\Delta m_{B}(15) = 0.98\pm0.16 mag and MB=19.45±0.15M_{B}=-19.45\pm0.15 mag at a distance modulus of μ=34.08±0.09\mu = 34.08\pm0.09 mag. The (uvw1uvv)(uvw1-uvv) colour evolution shows that SN 2017hpa falls in the NUV-blue group. The (BV)(B-V) colour at maximum is bluer in comparison to normal type Ia supernovae. Spectroscopic analysis shows that the Si II 6355 absorption feature evolves rapidly with a velocity gradient, v˙=128±7\dot{v}=128\pm 7 km s1^{-1} d1^{-1}. The pre-maximum phase spectra show prominent C II 6580 {\AA} absorption feature. The C II 6580 {\AA} line velocity measured from the observed spectra is lower than the velocity of Si II 6355 {\AA}, which could be due to a line of sight effect. The synthetic spectral fits to the pre-maximum spectra using syn++ indicate the presence of a high velocity component in the Si II absorption, in addition to a photospheric component. Fitting the observed spectrum with the spectral synthesis code TARDIS, the mass of unburned C in the ejecta is estimated to be 0.019\sim 0.019~MM_{\odot}. The peak bolometric luminosity is Lpeakbol=1.43×1043L^{bol}_{peak} = 1.43\times10^{43} erg s1^{-1}. The radiation diffusion model fit to the bolometric light curve indicates 0.61±0.020.61\pm0.02 MM_\odot of 56^{56}Ni is synthesized in the explosion.

Keywords

Cite

@article{arxiv.2102.08121,
  title  = {SN 2017hpa: A carbon-rich type Ia supernova},
  author = {Anirban Dutta and Avinash Singh and G. C. Anupama and D. K. Sahu and Brajesh Kumar},
  journal= {arXiv preprint arXiv:2102.08121},
  year   = {2021}
}

Comments

15 pages, 13 figures, Accepted for publication in MNRAS