Measuring Cosmological Parameters with Type Ia Supernovae in redMaGiC galaxies
Abstract
Current and future cosmological analyses with Type Ia Supernovae (SNe Ia) face three critical challenges: i) measuring redshifts from the supernova or its host galaxy; ii) classifying SNe without spectra; and iii) accounting for correlations between the properties of SNe Ia and their host galaxies. We present here a novel approach that addresses each challenge. In the context of the Dark Energy Survey (DES), we analyze a SNIa sample with host galaxies in the redMaGiC galaxy catalog, a selection of Luminous Red Galaxies. Photo- estimates for these galaxies are expected to be accurate to . The DES-5YR photometrically classified SNIa sample contains approximately 1600 SNe and 125 of these SNe are in redMaGiC galaxies. We demonstrate that redMaGiC galaxies almost exclusively host SNe Ia, reducing concerns with classification uncertainties. With this subsample, we find similar Hubble scatter (to within mag) using photometric redshifts in place of spectroscopic redshifts. With detailed simulations, we show the bias due to using photo-s from redMaGiC host galaxies on the measurement of the dark energy equation-of-state is up to . With real data, we measure a difference in when using redMaGiC photometric redshifts versus spectroscopic redshifts of . Finally, we discuss how SNe in redMaGiC galaxies appear to be a more standardizable population due to a weaker relation between color and luminosity () compared to the DES-3YR population by ; this finding is consistent with predictions that redMaGiC galaxies exhibit lower reddening ratios () than the general population of SN host galaxies. These results establish the feasibility of performing redMaGiC SN cosmology with photometric survey data in the absence of spectroscopic data.
Keywords
Cite
@article{arxiv.2202.10480,
title = {Measuring Cosmological Parameters with Type Ia Supernovae in redMaGiC galaxies},
author = {R. Chen and D. Scolnic and E. Rozo and E. S. Rykoff and B. Popovic and R. Kessler and M. Vincenzi and T. M. Davis and P. Armstrong and D. Brout and L. Galbany and L. Kelsey and C. Lidman and A. Möller and B. Rose and M. Sako and M. Sullivan and G. Taylor and P. Wiseman and J. Asorey and A. Carr and C. Conselice and K. Kuehn and G. F. Lewis and E. Macaulay and M. Rodriguez-Monroy and B. E. Tucker and T. M. C. Abbott and M. Aguena and S. Allam and F. Andrade-Oliveira and J. Annis and D. Bacon and E. Bertin and S. Bocquet and D. Brooks and D. L. Burke and A. Carnero Rosell and M. Carrasco Kind and J. Carretero and R. Cawthon and M. Costanzi and L. N. da Costa and M. E. S. Pereira and S. Desai and H. T. Diehl and P. Doel and S. Everett and I. Ferrero and B. Flaugher and D. Friedel and J. Frieman and J. García-Bellido and M. Gatti and E. Gaztanaga and D. Gruen and S. R. Hinton and D. L. Hollowood and K. Honscheid and D. J. James and O. Lahav and M. Lima and M. March and F. Menanteau and R. Miquel and R. Morgan and A. Palmese and F. Paz-Chinchón and A. Pieres and A. A. Plazas Malagón and J. Prat and A. K. Romer and A. Roodman and E. Sanchez and M. Schubnell and S. Serrano and I. Sevilla-Noarbe and M. Smith and M. Soares-Santos and E. Suchyta and G. Tarle and D. Thomas and C. To and D. L. Tucker and T. N. Varga},
journal= {arXiv preprint arXiv:2202.10480},
year = {2022}
}
Comments
15 pages, 8 figures. Submitting to ApJ, comments welcome