English

Photometric SN Ia Candidates from the Three-Year SDSS-II SN Survey Data

Cosmology and Nongalactic Astrophysics 2015-05-28 v1

Abstract

We analyze the three-year SDSS-II Superernova (SN) Survey data and identify a sample of 1070 photometric SN Ia candidates based on their multi-band light curve data. This sample consists of SN candidates with no spectroscopic confirmation, with a subset of 210 candidates having spectroscopic redshifts of their host galaxies measured, while the remaining 860 candidates are purely photometric in their identification. We describe a method for estimating the efficiency and purity of photometric SN Ia classification when spectroscopic confirmation of only a limited sample is available, and demonstrate that SN Ia candidates from SDSS-II can be identified photometrically with ~91% efficiency and with a contamination of ~6%. Although this is the largest uniform sample of SN candidates to date for studying photometric identification, we find that a larger spectroscopic sample of contaminating sources is required to obtain a better characterization of the background events. A Hubble diagram using SN candidates with no spectroscopic confirmation, but with host galaxy spectroscopic redshifts, yields a distance modulus dispersion that is only ~20 - 40% larger than that of the spectroscopically-confirmed SN Ia sample alone with no significant bias. A Hubble diagram with purely photometric classification and redshift-distance measurements, however, exhibit biases that require further investigation for precision cosmology.

Keywords

Cite

@article{arxiv.1107.5106,
  title  = {Photometric SN Ia Candidates from the Three-Year SDSS-II SN Survey Data},
  author = {Masao Sako and Bruce Bassett and Brian Connolly and Benjamin Dilday and Heather Campbell and Joshua Frieman and Larry Gladney and Richard Kessler and Hubert Lampeitl and John Marriner and Ramon Miquel and Robert Nichol and Donald Schneider and Mathew Smith and Jesper Sollerman},
  journal= {arXiv preprint arXiv:1107.5106},
  year   = {2015}
}

Comments

The Astrophysical Journal (in press)