Underluminous 1991bg-like Type Ia supernovae are standardizable candles
Abstract
It is widely accepted that the width-luminosity relation used to standardize normal Type Ia supernovae (SNe Ia) breaks down in underluminous, 1991bg-like SNe Ia. This breakdown may be due to the choice of parameter used as a stand-in for the width of the SN Ia light curve. Using the colour stretch parameter instead of older parameters resolves this issue. Here, I assemble a sample of 14 nearby 1991bg-like SNe Ia from the literature, all of which have independent host-galaxy distance moduli and little to no reddening. I use Gaussian process regression to fit the light curves of these SNe in , , , , , , and , and measure their peak absolute magnitudes. I find statistically significant ( confidence level in the optical and in the near-infrared) correlations between the peak absolute magnitudes of the 1991bg-like SNe Ia and their values in the range . These correlations are broadly consistent with fits to SNe Ia with preliminary - and -band peak absolute magnitudes from the Carnegie Supernova Project and significantly inconsistent with similar fits to normal and transitional SNe Ia (with ). The underluminous width-luminosity relation shown here needs to be properly calibrated with a homogeneous sample of 1991bg-like SNe Ia, after which it could be used as a rung on a new cosmological distance ladder. With surface-brightness fluctuations (or another non-Cepheid method) used to calibrate distances to nearby 1991bg-like SNe Ia, such a ladder could produce an independent measurement of the Hubble-Lema\^{i}tre Constant, .
Keywords
Cite
@article{arxiv.2311.16245,
title = {Underluminous 1991bg-like Type Ia supernovae are standardizable candles},
author = {Or Graur},
journal= {arXiv preprint arXiv:2311.16245},
year = {2024}
}
Comments
10 pages, 5 figures, 5 tables. Accepted for publication in MNRAS