English

Hubble Space Telescope studies of low-redshift Type Ia supernovae: Evolution with redshift and ultraviolet spectral trends

Cosmology and Nongalactic Astrophysics 2015-06-05 v2 Solar and Stellar Astrophysics

Abstract

We present an analysis of the maximum light, near ultraviolet (NUV; 2900-5500 A) spectra of 32 low redshift (0.001<z<0.08) Type Ia supernovae (SNe Ia), obtained with the Hubble Space Telescope (HST). We combine this spectroscopic sample with high-quality gri light curves obtained with robotic telescopes to measure photometric parameters, such as stretch, optical colour, and brightness. By comparing our data to a comparable sample of SNe Ia at intermediate-z (0.4<z<0.9), we detect modest spectral evolution (3-sigma), in the sense that our mean low-z NUV spectrum has a depressed flux compared to its intermediate-z counterpart. We also see a strongly increased dispersion about the mean with decreasing wavelength, confirming the results of earlier surveys. These trends are consistent with changes in metallicity as predicted by contemporary SN Ia spectral models. We also examine the properties of various NUV spectral diagnostics in the individual spectra. We find a general correlation between stretch and the velocity (or position) of many NUV spectral features. In particular, we observe that higher stretch SNe have larger Ca II H&K velocities, that also correlate with host galaxy stellar mass. This latter trend is probably driven by the well-established correlation between stretch and stellar mass. We find no trends between UV spectral features and optical colour. Mean spectra constructed according to whether the SN has a positive or negative Hubble residual show very little difference at NUV wavelengths, indicating that the NUV evolution and variation we identify do not directly correlate with Hubble residuals. Our work confirms and strengthens earlier conclusions regarding the complex behaviour of SNe Ia in the NUV spectral region, but suggests the correlations we find are more useful in constraining progenitor models than improving the use of SNe Ia as cosmological probes.

Keywords

Cite

@article{arxiv.1205.7040,
  title  = {Hubble Space Telescope studies of low-redshift Type Ia supernovae: Evolution with redshift and ultraviolet spectral trends},
  author = {K. Maguire and M. Sullivan and R. S. Ellis and P. E. Nugent and D. A. Howell and A. Gal-Yam and J. Cooke and P. Mazzali and Y-C. Pan and B. Dilday and R. C. Thomas and I. Arcavi and S. Ben-Ami and D. Bersier and F. B. Bianco and B. J. Fulton and I. Hook and A. Horesh and E. Hsiao and P. A. James and P. Podsiadlowski and E. S. Walker and O. Yaron and M. M. Kasliwal and R. R. Laher and N. M. Law and E. O. Ofek and D. Poznanski and J. Surace},
  journal= {arXiv preprint arXiv:1205.7040},
  year   = {2015}
}

Comments

22 pages, 14 figures, accepted in MNRAS with minor changes - Spectra are available on WISeREP, http://www.weizmann.ac.il/astrophysics/wiserep/