Distribution of Si II 6355 Velocities of Type Ia Supernovae and Implications for Asymmetric Explosions
arXiv:2010.05403 · doi:10.1093/mnras/staa3191
Abstract
The ejecta velocity is a very important parameter in studying the structure and properties of Type Ia supernovae (SNe Ia). It is also a candidate key parameter in improving the utility of SNe Ia for cosmological distance determinations. Here we study the velocity distribution of a sample of 311 SNe Ia from the kaepora database. The velocities are derived from the Si II 6355 absorption line in optical spectra measured at (or extrapolated to) the time of peak brightness. We statistically show that the observed velocity has a bimodal Gaussian distribution consisting of two groups of SNe Ia: Group I with a lower but narrower scatter (, ), and Group II with a higher but broader scatter (, ). The population ratio of Group I to Group II is 201:110 (65%:35%). There is substantial degeneracy between the two groups, but for SNe Ia with velocity , the distribution is dominated by Group II. The true origin of the two components is unknown, though there could be that naturally there exist two intrinsic velocity distributions as observed. However, we try to use asymmetric geometric models through statistical simulations to reproduce the observed distribution assuming all SNe Ia share the same intrinsic distribution. In the two cases we consider, 35\% of SNe Ia are considered to be asymmetric in Case 1, and all SNe Ia are asymmetric in Case 2. Simulations for both cases can reproduce the observed velocity distribution but require a significantly large portion () of SNe Ia to be asymmetric. In addition, the Case 1 result is consistent with recent polarization observations that SNe Ia with higher Si II 6355 velocity tend to be more polarized.
Accepted for publication in MNRAS
References in corpus (15)
- The Expansion of the Universe is Faster than Expected
- Spectropolarimetry of Supernovae
- Improved Distances to Type Ia Supernovae with Two Spectroscopic Subclasses
- The Spectroscopic Diversity of Type Ia Supernovae
- Strong Ultraviolet Pulse From a Newborn Type Ia Supernova
- Type Ia Supernovae as Stellar Endpoints and Cosmological Tools
- Evidence for Two Distinct Populations of Type Ia Supernovae
- Early Blue Excess from the Type Ia Supernova 2017cbv and Implications for Its Progenitor
- The rise of SN2014J in the nearby galaxy M82
- Double Detonations with Thin, Modestly Enriched Helium Layers Can Make Normal Type Ia Supernovae
- Classification of Swift's gamma-ray bursts
- Detonating Failed Deflagration Model of Thermonuclear Supernovae I. Explosion Dynamics
- Investigating the Diversity of Type Ia Supernova Spectra with the Open-Source Relational Database Kaepora
- Berkeley Supernova Ia Program: Data Release of 637 Spectra from 247 Type Ia Supernovae
- Constraining Type Ia Supernova Asymmetry with the Gamma-Ray Escape Timescale
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