Nearby SN-Associated GRB~190829A: Environment, Jet Structure, and VHE Gamma-Ray Afterglows
Abstract
We present a self-consistent paradigm for interpreting the striking features of nearby low-luminosity GRB~190829A. Its prompt gamma-ray lightcurve has two separated pulses. We propose that the interaction of the hard prompt gamma-ray photons ( keV) of its initial pulse with the dusty medium () does not only result in the second soft gamma-ray pulse ( keV), but also makes a pre-accelerated -rich medium shell via the annihilation.In this paradigm, we show that the observed radio, optical, and X-ray afterglow lightcurves are well fit with the forward shock model. Its jet is almost isotropic ( rad) with a Lorentz factor of , and the electron density of the -rich medium shell is cm, about 7~times higher than the electron density of its normal surrounding medium. The GRB ejecta catches up with and propagates into the -rich medium shell at a region of , resulting in a bright afterglow bump at seconds post the GRB trigger. The predicted very high energy (VHE) gamma-ray emission from the synchrotron self-Compton process agrees with the H.E.S.S. observation. The derived broadband spectral energy distribution shows that GRB~190829A like nearby GRBs would be promising targets of the VHE gamma-ray telescopes, such as H.E.S.S., MAGIC, and CTA (Cherenkov Telescope Arrays).
Keywords
Cite
@article{arxiv.2106.03466,
title = {Nearby SN-Associated GRB~190829A: Environment, Jet Structure, and VHE Gamma-Ray Afterglows},
author = {Zhang Lu-Lu and Ren Jia and Huang Xiao-Li and Liang Yun-Feng and Lin Da-Bin and Liang En-Wei},
journal= {arXiv preprint arXiv:2106.03466},
year = {2021}
}
Comments
14 pages, 4 figures, 1 tables; the original version was submitted to ApJ on Feb. 20, 2021 and currently is under review. The H.E.S.S. data published in Science 372, 1081 (2021) are added in the current posted version