Rapidly evolving transients in the Dark Energy Survey
Abstract
We present the results of a search for rapidly evolving transients in the Dark Energy Survey Supernova Programme. These events are characterized by fast light curve evolution (rise to peak in d and exponential decline in d after peak). We discovered 72 events, including 37 transients with a spectroscopic redshift from host galaxy spectral features. The 37 events increase the total number of rapid optical transients by more than factor of two. They are found at a wide range of redshifts () and peak brightnesses (). The multiband photometry is well fit by a blackbody up to few weeks after peak. The events appear to be hot ( K) and large ( cm) at peak, and generally expand and cool in time, though some events show evidence for a receding photosphere with roughly constant temperature. Spectra taken around peak are dominated by a blue featureless continuum consistent with hot, optically thick ejecta. We compare our events with a previously suggested physical scenario involving shock breakout in an optically thick wind surrounding a core-collapse supernova (CCSNe), we conclude that current models for such a scenario might need an additional power source to describe the exponential decline. We find these transients tend to favor star-forming host galaxies, which could be consistent with a core-collapse origin. However, more detailed modeling of the light curves is necessary to determine their physical origin.
Cite
@article{arxiv.1803.04869,
title = {Rapidly evolving transients in the Dark Energy Survey},
author = {M. Pursiainen and M. Childress and M. Smith and S. Prajs and M. Sullivan and T. M. Davis and R. J. Foley and J. Asorey and J. Calcino and D. Carollo and C. Curtin and C. B. D'Andrea and K. Glazebrook and C. Gutierrez and S. R. Hinton and J. K. Hoormann and C. Inserra and R. Kessler and A. King and K. Kuehn and G. F. Lewis and C. Lidman and E. Macaulay and A. Möller and R. C. Nichol and M. Sako and N. E. Sommer and E. Swann and B. E. Tucker and S. A. Uddin and P. Wiseman and B. Zhang and T. M. C. Abbott and F. B. Abdalla and S. Allam and J. Annis and S. Avila and D. Brooks and E. Buckley-Geer and D. L. Burke and A. Carnero Rosell and M. Carrasco Kind and J. Carretero and F. J. Castander and C. E. Cunha and C. Davis and J. De Vicente and H. T. Diehl and P. Doel and T. F. Eifler and B. Flaugher and P. Fosalba and J. Frieman and J. García-Bellido and D. Gruen and R. A. Gruendl and G. Gutierrez and W. G. Hartley and D. L. Hollowood and K. Honscheid and D. J. James and T. Jeltema and N. Kuropatkin and T. S. Li and M. Lima and M. A. G. Maia and P. Martini and F. Menanteau and R. L. C. Ogando and A. A. Plazas and A. Roodman and E. Sanchez and V. Scarpine and R. Schindler and R. C. Smith and M. Soares-Santos and F. Sobreira and E. Suchyta and M. E. C. Swanson and G. Tarle and D. L. Tucker and A. R. Walker},
journal= {arXiv preprint arXiv:1803.04869},
year = {2018}
}
Comments
Accepted to MNRAS on 22.8.2018