English

Are Type Ia Supernovae in Restframe $H$ Brighter in More Massive Galaxies?

Astrophysics of Galaxies 2022-01-05 v2 Cosmology and Nongalactic Astrophysics

Abstract

We analyze 143 Type Ia supernovae (SNeIa) observed in HH band (1.6-1.8 μ\mum) and find SNeIa are intrinsically brighter in HH-band with increasing host galaxy stellar mass. We find SNeIa in galaxies more massive than 1010.43M10^{10.43} M_{\odot} are 0.13±0.040.13 \pm 0.04 mag brighter in HH than SNeIa in less massive galaxies. The same set of SNeIa observed at optical wavelengths, after width-color-luminosity corrections, exhibit a 0.10±0.030.10 \pm 0.03 mag offset in the Hubble residuals. We observe an outlier population (ΔHmax>0.5|\Delta H_{\rm max}| > 0.5 mag) in the HH band and show that removing the outlier population moves the mass threshold to 1010.65M10^{10.65} M_{\odot} and reduces the step in HH band to 0.08±0.040.08 \pm 0.04 mag, but the equivalent optical mass step is increased to 0.13±0.040.13 \pm 0.04 mag. We conclude the outliers do not drive the brightness--host-mass correlation. Less massive galaxies preferentially host more higher-stretch SNeIa, which are intrinsically brighter and bluer. It is only after correction for width-luminosity and color-luminosity relationships that SNeIa have brighter optical Hubble residuals in more massive galaxies. Thus finding SNeIa are intrinsically brighter in HH in more massive galaxies is an opposite correlation to the intrinsic (pre-width-luminosity correction) optical brightness. If dust and the treatment of intrinsic color variation were the main driver of the host galaxy mass correlation, we would not expect a correlation of brighter HH-band SNeIa in more massive galaxies.

Keywords

Cite

@article{arxiv.2006.13803,
  title  = {Are Type Ia Supernovae in Restframe $H$ Brighter in More Massive Galaxies?},
  author = {Kara A. Ponder and W. Michael Wood-Vasey and Anja Weyant and Nathan T. Barton and Lluis Galbany and Shu Liu and Peter Garnavich and Thomas Matheson},
  journal= {arXiv preprint arXiv:2006.13803},
  year   = {2022}
}

Comments

54 pages, 21 Figures, 15 Tables. Accepted to the Astrophysical Journal