English

Near-IR Type Ia SN distances: host galaxy extinction and mass-step corrections revisited

Astrophysics of Galaxies 2022-01-05 v2 Solar and Stellar Astrophysics

Abstract

We present optical and near-infrared (NIR, YJHYJH-band) observations of 42 Type Ia supernovae (SNe Ia) discovered by the untargeted intermediate Palomar Transient Factory (iPTF) survey. This new data-set covers a broad range of redshifts and host galaxy stellar masses, compared to previous SN Ia efforts in the NIR. We construct a sample, using also literature data at optical and NIR wavelengths, to examine claimed correlations between the host stellar masses and the Hubble diagram residuals. The SN magnitudes are corrected for host galaxy extinction using either a global total-to-selective extinction ratio, RVR_V=2.0 for all SNe, or a best-fit RVR_V for each SN individually. Unlike previous studies which were based on a narrower range in host stellar mass, we do not find evidence for a "mass-step", between the color- and stretch-corrected peak JJ and HH magnitudes for galaxies below and above log(M/M)=10\log(M_{*}/M_{\odot}) = 10. However, the mass-step remains significant (3σ3\sigma) at optical wavelengths (g,r,ig,r,i) when using a global RVR_V, but vanishes when each SN is corrected using their individual best-fit RVR_V. Our study confirms the benefits of the NIR SN Ia distance estimates, as these are largely exempted from the empirical corrections dominating the systematic uncertainties in the optical.

Keywords

Cite

@article{arxiv.2105.06236,
  title  = {Near-IR Type Ia SN distances: host galaxy extinction and mass-step corrections revisited},
  author = {J. Johansson and S. B. Cenko and O. D. Fox and S. Dhawan and A. Goobar and V. Stanishev and N. Butler and W. H. Lee and A. M. Watson and U. C. Fremling and M. M. Kasliwal and P. E. Nugent and T. Petrushevska and J. Sollerman and L. Yan and J. Burke and G. Hosseinzadeh and D. A. Howell and C. McCully and S. Valenti},
  journal= {arXiv preprint arXiv:2105.06236},
  year   = {2022}
}

Comments

20 pages, 13 figures. Submitted to ApJ. Comments are welcome!