English

Measuring the Ejecta Velocities of Type Ia Supernovae from the Pan-STARRS1 Medium Deep Survey

High Energy Astrophysical Phenomena 2024-07-01 v2 Cosmology and Nongalactic Astrophysics

Abstract

There is growing evidence that Type Ia supernovae (SNe Ia) may originate from multiple explosion channels. Previous studies have indicated that the ejecta velocity of SNe Ia is one powerful tool to discriminate between different channels. In this work, we study ~400 confirmed SNe Ia discovered by the Pan-STARRS1 Medium Deep Survey (PS1-MDS), and obtain a sample of ~50 SNe Ia that have near-peak Si II 6355 velocity (Vsi) measurements. We investigate the relationships between Vsi and various parameters, including SN light-curve width, color, host-galaxy properties, and redshift. No significant trends are identified between Vsi and light-curve parameters. Regarding the host-galaxy properties, we see a significant trend that high-velocity (HV) SNe Ia (Vsi > 12000 km/s) tend to reside in more massive galaxies compared to normal-velocity (NV) SNe Ia (Vsi < 12000 km/s) when combining both the PS1-MDS dataset and those from previous low-z studies. While we do not see a significant trend between Vsi and redshift, HV SNe Ia appear to be more prevalent in low-z samples than in high-z samples. We discuss several possibilities that could potentially contribute to this trend. Furthermore, we investigate the potential bias on SN Ia distances and find no significant difference in Hubble residuals between HV and NV subgroups.

Keywords

Cite

@article{arxiv.2211.06895,
  title  = {Measuring the Ejecta Velocities of Type Ia Supernovae from the Pan-STARRS1 Medium Deep Survey},
  author = {Y. -C. Pan and Y. -S. Jheng and D. O. Jones and I. -Y. Lee and R. J. Foley and R. Chornock and D. M. Scolnic and E. Berger and P. M. Challis and M. Drout and M. E. Huber and R. P. Kirshner and R. Kotak and R. Lunnan and G. Narayan and A. Rest and S. Rodney and S. Smartt},
  journal= {arXiv preprint arXiv:2211.06895},
  year   = {2024}
}

Comments

15 pages, 13 figures, 3 tables, accepted for publication in MNRAS