Lowly polarized light from a highly magnetized jet of GRB 190114C
Abstract
We report multi-color optical imaging and polarimetry observations of the afterglow of the first TeV- detected gamma-ray burst, GRB 190114C, using RINGO3 and MASTER II polarimeters. Observations begin 31 s after the onset of the GRB and continue until s post-burst. The light curves reveal a chromatic break at s, with initial temporal decay flattening to post-break, which we model as a combination of reverse and forward-shock components, with magnetization parameter . The observed polarization degree decreases from to during s post-burst and remains steady at this level for the subsequent -s, at constant position angle. Broadband spectral energy distribution modeling of the afterglow confirms GRB 190114C is highly obscured (Amag; Ncm). We interpret the measured afterglow polarization as intrinsically low and dominated by dust, in contrast to measured previously for other GRB reverse shocks, with a small contribution from polarized prompt photons in the first minute. We test whether 1st and higher-order inverse Compton scattering in a magnetized reverse shock can explain the low optical polarization and the sub-TeV emission but conclude neither is explained in the reverse shock Inverse Compton model. Instead, the unexpectedly low intrinsic polarization degree in GRB 190114C can be explained if large-scale jet magnetic fields are distorted on timescales prior to reverse shock emission.
Keywords
Cite
@article{arxiv.1911.08499,
title = {Lowly polarized light from a highly magnetized jet of GRB 190114C},
author = {N. Jordana-Mitjans and C. G. Mundell and S. Kobayashi and R. J. Smith and C. Guidorzi and I. A. Steele and M. Shrestha and A. Gomboc and M. Marongiu and R. Martone and V. Lipunov and E. S. Gorbovskoy and D. A. H. Buckley and R. Rebolo and N. M. Budnev},
journal= {arXiv preprint arXiv:1911.08499},
year = {2020}
}
Comments
The full photometry data is available in the journal publication