SN 2018hti is a Type I superluminous supernova (SLSN~I) with an absolute g-band magnitude of −22.2 at maximum brightness, discovered in a metal-poor galaxy at a redshift of 0.0612. We present extensive photometric and spectroscopic observations of this supernova, covering the phases from ∼−35 days to more than +340 days from the r-band maximum. Combining our BVgri-band photometry with {\it Swift} UVOT optical/ultraviolet photometry, we calculated the peak luminosity as ∼3.5×1044 erg s−1. Modeling the observed light curve reveals that the luminosity evolution of SN 2018hti can be produced by an ejecta mass of 5.8 M⊙ and a magnetar with a magnetic field of B=1.8×1013~G having an initial spin period of P0=1.8 ms. Based on such a magnetar-powered scenario and a larger sample, a correlation between the spin of the magnetar and the kinetic energy of the ejecta can be inferred for most SLSNe~I, suggesting a self-consistent scenario. Like for other SLSNe~I, the host galaxy of SN 2018hti is found to be relatively faint (Mg=−17.75 mag) and of low metallicity (Z=0.3Z⊙), with a star-formation rate of 0.3 M⊙ yr−1. According to simulation results of single-star evolution, SN 2018hti could originate from a massive, metal-poor star with a zero-age main sequence (ZAMS) mass of 25--40 M⊙, or from a less massive rotating star with MZAMS≈16--25 M⊙. For the case of a binary system, its progenitor could also be a star with MZAMS≳25M⊙.
@article{arxiv.2006.16443,
title = {SN 2018hti: a nearby superluminous supernova discovered in a metal-poor galaxy},
author = {W. L. Lin and X. F. Wang and W. X. Li and J. J. Zhang and J. Mo and H. N. Sai and X. H. Zhang and A. V. Filippenko and W. K. Zheng and T. G. Brink and E. Baron and J. M. DerKacy and S. A. Ehgamberdiev and D. Mirzaqulov and X. Li and J. C. Zhang and S. Y. Yan and G. B. Xi and Y. Hsiao and T. M. Zhang and L. J. Wang and L. D. Liu and D. F. Xiang and C. Y. Wu and L. M. Rui and Z. H. Chen},
journal= {arXiv preprint arXiv:2006.16443},
year = {2020}
}
Comments
26 pages, 12 figures, 7 tables, published in MNRAS