The Dark Energy Survey Supernova Program results: Type Ia Supernova brightness correlates with host galaxy dust
Abstract
Cosmological analyses with type Ia supernovae (SNe Ia) often assume a single empirical relation between color and luminosity () and do not account for varying host-galaxy dust properties. However, from studies of dust in large samples of galaxies, it is known that dust attenuation can vary significantly. Here we take advantage of state-of-the-art modeling of galaxy properties to characterize dust parameters (dust attenuation , and a parameter describing the dust law slope ) for the Dark Energy Survey (DES) SN Ia host galaxies using the publicly available \texttt{BAGPIPES} code. Utilizing optical and infrared data of the hosts alone, we find three key aspects of host dust that impact SN Ia cosmology: 1) there exists a large range () of host 2) high stellar mass hosts have on average lower than that of low-mass hosts 3) there is a significant () correlation between the Hubble diagram residuals of red SNe Ia that when corrected for reduces scatter by and the significance of the ``mass step'' to . These represent independent confirmations of recent predictions based on dust that attempted to explain the puzzling ``mass step'' and intrinsic scatter () in SN Ia analyses. We also find that red-sequence galaxies have both lower and more peaked dust law slope distributions on average in comparison to non red-sequence galaxies. We find that the SN Ia and both differ by when determined separately for red-sequence galaxy and all other galaxy hosts. The agreement between fitted host- and SN Ia \& suggests that host dust properties play a major role in SN Ia color-luminosity standardization and supports the claim that SN Ia intrinsic scatter is driven by variation.
Keywords
Cite
@article{arxiv.2206.06928,
title = {The Dark Energy Survey Supernova Program results: Type Ia Supernova brightness correlates with host galaxy dust},
author = {Cole Meldorf and Antonella Palmese and Dillon Brout and Rebecca Chen and Daniel Scolnic and Lisa Kelsey and Lluís Galbany and Will Hartley and Tamara Davis and Alex Drlica-Wagner and Maria Vincenzi and James Annis and Mitchell Dixon and Or Graur and Alex Kim and Christopher Lidman and Anais Möller and Peter Nugent and Benjamin Rose and Mathew Smith and Sahar Allam and H. Thomas Diehl and Douglas Tucker and Jacobo Asorey and Josh Calcino and Daniela Carollo and Karl Glazebrook and Geraint Lewis and Georgina Taylor and Brad E. Tucker and Michel Aguena and Felipe Andrade-Oliveira and David Bacon and Emmanuel Bertin and Sebastian Bocquet and David Brooks and David Burke and Jorge Carretero and Matias Carrasco Kind and Francisco Javier Castander and Matteo Costanzi and Luiz da Costa and Shantanu Desai and Peter Doel and Spencer Everett and Ismael Ferrero and Douglas Friedel and Josh Frieman and Juan Garcia-Bellido and Marco Gatti and Daniel Gruen and Julia Gschwend and Gaston Gutierrez and Samuel Hinton and Devon L. Hollowood and Klaus Honscheid and David James and Kyler Kuehn and Marisa March and Jennifer Marshall and Felipe Menanteau and Ramon Miquel and Robert Morgan and Francisco Paz-Chinchon and Maria Elidaiana da Silva Pereira and Eusebio Sanchez and Vic Scarpine and Ignacio Sevilla and Eric Suchyta and Gregory Tarle and Tamas Norbert Varga},
journal= {arXiv preprint arXiv:2206.06928},
year = {2022}
}
Comments
22 pages. Submitted to MNRAS