GRB 190829A at z=0.0785 is the fourth closest long GRB ever detected by the Neil Gehrels Swift observatory, and the third confirmed case with a very high energy component. We present our multi-wavelength analysis of this rare event, focusing on its early stages of evolution, and including data from Swift, the MASTER global network of optical telescopes, ALMA, and ATCA. We report sensitive limits on the linear polarization of the optical emission, disfavouring models of off-axis jets to explain the delayed afterglow peak. The study of the multi-wavelength light curves and broadband spectra supports a model with at least two emission components: a bright reverse shock emission, visible at early times in the optical and X-rays and, later, in the radio band; and a forward shock component dominating at later times and lower radio frequencies. A combined study of the prompt and afterglow properties shows many similarities with cosmological long GRBs, suggesting that GRB 190829A is an example of classical GRBs in the nearby universe.
@article{arxiv.2111.14861,
title = {The early afterglow of GRB 190829A},
author = {S. Dichiara and E. Troja and V. Lipunov and R. Ricci and S. R. Oates and N. R. Butler and E. Liuzzo and G. Ryan and B. O'Connor and S. B. Cenko and R. G. Cosentino and A. Y. Lien and E. Gorbovskoy and N. Tyurina and P. Balanutsa and D. Vlasenko and I. Gorbunov and R. Podesta and F. Podesta and R. Rebolo and M. Serra and D. A. H. Buckley},
journal= {arXiv preprint arXiv:2111.14861},
year = {2022}
}
Comments
13 pages, 8 figures, accepted for publication in MNRAS