English

Amalgame: Cosmological Constraints from the First Combined Photometric Supernova Sample

Cosmology and Nongalactic Astrophysics 2023-09-12 v1

Abstract

Future constraints of cosmological parameters from Type Ia supernovae (SNe Ia) will depend on the use of photometric samples, those samples without spectroscopic measurements of the SNe Ia. There is a growing number of analyses that show that photometric samples can be utilised for precision cosmological studies with minimal systematic uncertainties. To investigate this claim, we perform the first analysis that combines two separate photometric samples, SDSS and Pan-STARRS, without including a low-redshift anchor. We evaluate the consistency of the cosmological parameters from these two samples and find they are consistent with each other to under 1σ1\sigma. From the combined sample, named Amalgame, we measure ΩM=0.328±0.024\Omega_M = 0.328 \pm 0.024 with SN alone in a flat Λ\LambdaCDM model, and ΩM=0.330±0.018\Omega_M = 0.330 \pm 0.018 and w=1.0160.058+0.055w = -1.016^{+0.055}_{-0.058} when combining with a Planck data prior and a flat wwCDM model. These results are consistent with constraints from the Pantheon+ analysis of only spectroscopically confirmed SNe Ia, and show that there are no significant impediments to analyses of purely photometric samples of SNe Ia.

Keywords

Cite

@article{arxiv.2309.05654,
  title  = {Amalgame: Cosmological Constraints from the First Combined Photometric Supernova Sample},
  author = {Brodie Popovic and Daniel Scolnic and Maria Vincenzi and Mark Sullivan and Dillon Brout and Bruno O. Sanchez and Rebecca Chen and Utsav Patel and Erik R. Peterson and Richard Kessler and Lisa Kelsey and Ava Claire Bailey and Phil Wiseman and Marcus Toy},
  journal= {arXiv preprint arXiv:2309.05654},
  year   = {2023}
}

Comments

Submitting to MNRAS; comments welcome