Extensive Spectroscopy and Photometry of the Type IIP Supernova 2013ej
G. Dhungana, R. Kehoe, J. Vinko, J. M. Silverman, J. C. Wheeler, G. H., Marion, W. Zheng, O. D. Fox, C. Akerlof, B. I. Biro, T. Borkovits, S. B., Cenko, K. I. Clubb, A. V. Filippenko, F. V. Ferrante, C. A. Gibson, M. L., Graham, T. Hegedus, P. Kelly, J. Kelemen, W. H. Lee

TL;DR
This paper provides extensive photometric and spectroscopic data on SN 2013ej, deriving physical parameters and calibrations, and estimating the distance and explosion characteristics of this Type IIP supernova.
Contribution
It offers a comprehensive dataset and analysis of SN 2013ej, including bolometric calibrations, spectral homogeneity observations, and physical parameter estimations, enhancing understanding of Type IIP supernovae.
Findings
Distance to host galaxy: 9.0 Mpc
Explosion energy: 0.9 x 10^{51} ergs
Nickel mass: 0.013 M_sun
Abstract
We present extensive optical (, , and open CCD) and near-infrared () photometry for the very nearby Type IIP SN ~2013ej extending from +1 to +461 days after shock breakout, estimated to be MJD . Substantial time series ultraviolet and optical spectroscopy obtained from +8 to +135 days are also presented. Considering well-observed SNe IIP from the literature, we derive bolometric calibrations from and unfiltered measurements that potentially reach 2\% precision with a color-dependent correction. We observe moderately strong Si II as early as +8 days. The photospheric velocity () is determined by modeling the spectra in the vicinity of Fe II whenever observed, and interpolating at photometric epochs based on a semianalytic method. This gives km s at +50…
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