The Dark Energy Survey Supernova Program: Cosmological Analysis and Systematic Uncertainties
Abstract
We present the full Hubble diagram of photometrically-classified Type Ia supernovae (SNe Ia) from the Dark Energy Survey supernova program (DES-SN). DES-SN discovered more than 20,000 SN candidates and obtained spectroscopic redshifts of 7,000 host galaxies. Based on the light-curve quality, we select 1635 photometrically-identified SNe Ia with spectroscopic redshift 0.101.13, which is the largest sample of supernovae from any single survey and increases the number of known supernovae by a factor of five. In a companion paper, we present cosmological results of the DES-SN sample combined with 194 spectroscopically-classified SNe Ia at low redshift as an anchor for cosmological fits. Here we present extensive modeling of this combined sample and validate the entire analysis pipeline used to derive distances. We show that the statistical and systematic uncertainties on cosmological parameters are 0.017 in a flat CDM model, and (0.082, 0.152) in a flat CDM model. Combining the DES SN data with the highly complementary CMB measurements by Planck Collaboration (2020) reduces uncertainties on cosmological parameters by a factor of 4. In all cases, statistical uncertainties dominate over systematics. We show that uncertainties due to photometric classification make up less than 10% of the total systematic uncertainty budget. This result sets the stage for the next generation of SN cosmology surveys such as the Vera C. Rubin Observatory's Legacy Survey of Space and Time.
Cite
@article{arxiv.2401.02945,
title = {The Dark Energy Survey Supernova Program: Cosmological Analysis and Systematic Uncertainties},
author = {M. Vincenzi and D. Brout and P. Armstrong and B. Popovic and G. Taylor and M. Acevedo and R. Camilleri and R. Chen and T. M. Davis and S. R. Hinton and L. Kelsey and R. Kessler and J. Lee and C. Lidman and A. Möller and H. Qu and M. Sako and B. Sanchez and D. Scolnic and M. Smith and M. Sullivan and P. Wiseman and J. Asorey and B. A. Bassett and D. Carollo and A. Carr and R. J. Foley and C. Frohmaier and L. Galbany and K. Glazebrook and O. Graur and E. Kovacs and K. Kuehn and U. Malik and R. C. Nichol and B. Rose and B. E. Tucker and M. Toy and D. L. Tucker and F. Yuan and T. M. C. Abbott and M. Aguena and O. Alves and F. Andrade-Oliveira and J. Annis and D. Bacon and K. Bechtol and G. M. Bernstein and D. Brooks and D. L. Burke and A. Carnero Rosell and J. Carretero and F. J. Castander and C. Conselice and L. N. da Costa and M. E. S. Pereira and S. Desai and H. T. Diehl and P. Doel and I. Ferrero and B. Flaugher and D. Friedel and J. Frieman and J. García-Bellido and M. Gatti and G. Giannini and D. Gruen and R. A. Gruendl and D. L. Hollowood and K. Honscheid and D. Huterer and D. J. James and N. Kuropatkin and O. Lahav and S. Lee and H. Lin and J. L. Marshall and J. Mena-Fernández and F. Menanteau and R. Miquel and A. Palmese and A. Pieres and A. A. Plazas Malagón and A. Porredon and A. K. Romer and A. Roodman and E. Sanchez and D. Sanchez Cid and M. Schubnell and I. Sevilla-Noarbe and E. Suchyta and M. E. C. Swanson and G. Tarle and C. To and A. R. Walker and N. Weaverdyck},
journal= {arXiv preprint arXiv:2401.02945},
year = {2024}
}
Comments
39 pages, 19 figures; Submitted to ApJ; companion paper Dark Energy Collaboration et al. on consecutive arxiv number 2401.02929