The Fast Evolution of SN 2010bh associated with XRF 100316D
Felipe Olivares E., Jochen Greiner, Patricia Schady, Arne Rau, Sylvio, Klose, Thomas Kr\"uhler, Paulo M. J. Afonso, Adria C. Updike, Marco Nardini,, Robert Filgas, Ana Nicuesa Guelbenzu, Christian Clemens, Jonny Elliott, D., Alexander Kann, Andrea Rossi, and Vladimir Sudilovsky

TL;DR
This paper presents detailed multi-wavelength observations and analysis of the rapidly evolving and highly energetic supernova SN 2010bh associated with XRF 100316D, revealing its physical properties and comparison with other GRB-SNe.
Contribution
It provides the first comprehensive early-time broadband data and physical modeling of SN 2010bh, highlighting its rapid evolution and energetic explosion characteristics.
Findings
SN 2010bh is ~65% as bright as SN 1998bw.
It is the most rapidly evolving GRB-SN to date.
The explosion energy is among the highest observed for GRB-SNe.
Abstract
(...) Since 1998, only half a dozen spectroscopically confirmed associations have been discovered and XRF 100316D associated with the type-Ic SN 2010bh at z = 0.059 is among the latest. We began observations with GROND 12 hours after the GRB trigger and continued until 80 days after the burst. GROND provided excellent photometric data in six filter bands covering a wavelength range from approx. 350 to 1800 nm, significantly expanding the pre-existing data set for this event. Combining GROND and Swift data, the early broad-band SED is modelled with a blackbody and afterglow component attenuated by dust and gas absorption. The best-fit SED models imply moderate reddening along the line of sight through the host galaxy (A_V = 1.2 \pm 0.1 mag). The temperature and radius evolution of the thermal component are analysed and combined with earlier measurements available from the literature.…
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