English

SN 2016jhj at redshift 0.34: extending the Type II supernova Hubble diagram using the standard candle method

High Energy Astrophysical Phenomena 2017-10-18 v1 Cosmology and Nongalactic Astrophysics

Abstract

Although Type Ia supernova cosmology has now reached a mature state, it is important to develop as many independent methods as possible to understand the true nature of dark energy. Recent studies have shown that Type II supernovae (SNe II) offer such a path and could be used as alternative distance indicators. However, the majority of these studies were unable to extend the Hubble diagram above redshift z=0.3z=0.3 because of observational limitations. Here, we show that we are now ready to move beyond low redshifts and attempt high-redshift (z0.3z \gtrsim 0.3) SN~II cosmology as a result of new-generation deep surveys such as the Subaru/Hyper Suprime-Cam (HSC) survey. Applying the "standard candle method" to SN\sim2016jhj (z=0.3398±0.0002z=0.3398 \pm 0.0002; discovered by HSC) together with a low-redshift sample, we are able to construct the highest-redshift SN II Hubble diagram to date with an observed dispersion of 0.27 mag (i.e., 12-13% in distance). This work demonstrates the bright future of SN~II cosmology in the coming era of large, wide-field surveys like that of the Large Synoptic Survey Telescope.

Keywords

Cite

@article{arxiv.1709.01513,
  title  = {SN 2016jhj at redshift 0.34: extending the Type II supernova Hubble diagram using the standard candle method},
  author = {T. de Jaeger and L. Galbany and A. V. Filippenko and S. González-Gaitán and N. Yasuda and K. Maeda and M. Tanaka and T. Morokuma and T. J. Moriya and N. Tominaga and K. Nomoto and Y. Komiyama and J. P. Anderson and T. G. Brink and R. G. Carlberg and G. Folatelli and M. Hamuy and G. Pignata and W. Zheng},
  journal= {arXiv preprint arXiv:1709.01513},
  year   = {2017}
}

Comments

Accepted for publication in MNRAS. 12 pages, 6 figures, 3 tables