The Highly Energetic Expansion of SN2010bh Associated with GRB 100316D
Filomena Bufano (1), Elena Pian, Jesper Sollerman, Stefano Benetti,, Giuliano Pignata, Stefano Valenti, Stefano Covino, Paolo D'Avanzo, Daniele, Malesani, Enrico Cappellaro, Massimo Della Valle, Johan Fynbo, Jens Hjorth,, Paolo A. Mazzali, Daniel E. Reichart

TL;DR
SN 2010bh, associated with GRB 100316D, is a highly energetic type Ic supernova with rapid rise, high velocities, and unique spectral features, providing new insights into hypernova diversity.
Contribution
This study provides the most detailed spectral and photometric analysis of SN 2010bh, revealing its rapid evolution, high velocities, and energetic explosion characteristics, expanding understanding of GRB-associated supernovae.
Findings
SN 2010bh has a rapid 8-day rise to maximum brightness.
Expansion velocities reach up to 47,000 km/s, higher than previous GRB SNe.
The supernova has a small ejected mass (~3 Msun) and high kinetic energy (~10^52 erg).
Abstract
We present the spectroscopic and photometric evolution of the nearby (z = 0.059) spectroscopically confirmed type Ic supernova, SN 2010bh, associated with the soft, long-duration gamma-ray burst (X-ray flash) GRB 100316D. Intensive follow-up observations of SN 2010bh were performed at the ESO Very Large Telescope (VLT) using the X-shooter and FORS2 instruments. Owing to the detailed temporal coverage and the extended wavelength range (3000--24800 A), we obtained an unprecedentedly rich spectral sequence among the hypernovae, making SN 2010bh one of the best studied representatives of this SN class. We find that SN 2010bh has a more rapid rise to maximum brightness (8.0 +/- 1.0 rest-frame days) and a fainter absolute peak luminosity (L_bol~3e42 erg/s) than previously observed SN events associated with GRBs. Our estimate of the ejected (56)Ni mass is 0.12 +/- 0.02 Msun. From the broad…
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