English

A Gravitationally Lensed Supernova with an Observable Two-Decade Time Delay

Cosmology and Nongalactic Astrophysics 2021-07-13 v2

Abstract

When the light from a distant object passes very near to a foreground galaxy or cluster, gravitational lensing can cause it to appear as multiple images on the sky. If the source is variable, it can be used to constrain the cosmic expansion rate and dark energy models. Achieving these cosmological goals requires many lensed transients with precise time delay measurements. Lensed supernovae (SN) are attractive for this purpose because they have relatively simple photometric behavior, with well-understood light curve shapes and colours - in contrast to the stochastic variation of quasars. Here we report the discovery of a multiply-imaged supernova, AT2016jka ("SN Requiem"). It appeared in an evolved galaxy at z=1.95z=1.95, gravitationally lensed by a foreground galaxy cluster. It is likely a Type Ia supernova - the explosion of a low-mass stellar remnant, whose light curve can be used to measure cosmic distances. In archival Hubble Space Telescope imaging, three lensed images of the supernova are detected with relative time delays of <<200 days. We predict a fourth image will appear close to the cluster core in the year 2037±\pm2. Observation of the fourth image could provide a time delay precision of \approx7 days, <1%<1\% of the extraordinary 20 year baseline. The SN classification and the predicted reappearance time could be improved with further lens modelling and a comprehensive analysis of systematic uncertainties.

Keywords

Cite

@article{arxiv.2106.08935,
  title  = {A Gravitationally Lensed Supernova with an Observable Two-Decade Time Delay},
  author = {Steven A. Rodney and Gabriel B. Brammer and Justin D. R. Pierel and Johan Richard and Sune Toft and Kyle F. O'Connor and Mohammad Akhshik and Katherine Whitaker},
  journal= {arXiv preprint arXiv:2106.08935},
  year   = {2021}
}

Comments

Accepted for publication in a peer-reviewed journal. Main text = 6 pages, 3 figures, 1 table; Full document = 28 pages, 12 figures with Methods, Supplemental Info and references. v2: reformatted; minor corrections in SI

R2 v1 2026-06-24T03:16:41.111Z