SN 2013dx associated with GRB 130702A: a detailed photometric and spectroscopic monitoring and a study of the environment
V. D'Elia, E. Pian, A. Melandri, P. D'Avanzo, M. Della Valle, P.A., Mazzali, S. Piranomonte, G. Tagliaferri, L.A. Antonelli, F. Bufano, S., Covino, D. Fugazza, D. Malesani, P. Moller, E. Palazzi

TL;DR
This study provides a detailed photometric and spectroscopic analysis of SN 2013dx, associated with GRB 130702A, revealing its physical properties, similarities to other GRB-SNe, and its environment within a galaxy group.
Contribution
It offers the first comprehensive characterization of SN 2013dx, including its light curve, spectra, and environmental context, expanding understanding of GRB-associated supernovae.
Findings
SN 2013dx's bolometric light curve is similar to SN 2003dh but slightly faster and dimmer.
The kinetic energy of SN 2013dx is approximately 35×10^51 erg.
The host galaxy is part of a galaxy group, an unusual environment for a GRB-SN.
Abstract
Long duration gamma-ray bursts (GRBs) and broad-line, type Ic supernovae (SNe) are strongly connected. We aim at characterizing SN 2013dx, associated with GRB\,130702A, through sensitive and extensive ground-based observational campaigns in the optical-IR band. We monitored the field of the Swift GRB 130702A (redshift z = 0.145) using the 8.2-m VLT, the 3.6-m TNG and the 0.6-m REM telescopes during the time interval between 4 and 40 days after the burst. Photometric and spectroscopic observations revealed the presence of the associated Type Ic SN 2013dx. Our multi-band photometry allowed the construction of a bolometric light curve.} The bolometric light curve of SN 2013dx resembles that of 2003dh (associated with GRB 030329), but is ~10% faster and ~25% dimmer. From this we infer a synthesized 56Ni mass of ~0.2 solar masses. The multi-epoch optical spectroscopy shows that the SN…
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