Sample of hydrogen-rich superluminous supernovae from the Zwicky Transient Facility
P.J. Pessi, R. Lunnan, J. Sollerman, S. Schulze, A. Gkini, A., Gangopadhyay, L. Yan, A. Gal-Yam, D.A. Perley, T.-W. Chen, K.R. Hinds, S.J., Brennan, Y. Hu, A. Singh, I. Andreoni, D.O. Cook, C. Fremling, A.Y.Q. Ho, Y., Sharma, S. van Velzen, T. Kangas, A. Wold, E.C. Bellm

TL;DR
This study analyzes 107 hydrogen-rich superluminous supernovae (SLSNe II) from ZTF to characterize their light curves, diversity, and potential for future observations, providing a large dataset for validating theoretical models.
Contribution
It presents the largest sample of SLSNe II light curves, offering detailed analysis of their properties and diversity, and discusses implications for future surveys like LSST.
Findings
SLSNe II have a median peak magnitude of -20.3 mag.
Their rise times range from two weeks to over three months.
They show no significant correlation between peak brightness and timescales.
Abstract
Hydrogen-rich superluminous supernovae (SLSNe II) are rare. The exact mechanism producing their extreme light curve peaks is not understood. Analysis of single events and small samples suggest that CSM interaction is the main responsible for their features. However, other mechanisms can not be discarded. Large sample analysis can provide clarification. We aim to characterize the light curves of a sample of 107 SLSNe II to provide valuable information that can be used to validate theoretical models. We analyze the gri light curves of SLSNe II obtained through ZTF. We study peak absolute magnitudes and characteristic timescales. When possible we compute g-r colors, pseudo-bolometric light curves, and estimate lower limits for their total radiated energy. We also study the luminosity distribution of our sample and estimate the percentage of them that would be observable by the LSST.…
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Taxonomy
TopicsGamma-ray bursts and supernovae · Atomic and Subatomic Physics Research · Astro and Planetary Science
