arXiv Analytics

Sign in

arXiv:0905.2417 [astro-ph.HE]AbstractReferencesReviewsResources

On the generation of high energy photons detected by the Fermi Satellite from gamma-ray bursts

Pawan Kumar, Rodolfo Barniol Duran

Published 2009-05-14, updated 2009-11-20Version 2

Observations of gamma-ray bursts by the Fermi satellite, capable of detecting photons in a very broad energy band: 8keV to >300GeV, have opened a new window for the study of these enigmatic explosions. It is widely assumed that photons of energy larger than 100 MeV are produced by the same source that generated lower energy photons -- at least whenever the shape of the spectrum is a Band function. We report here a surprising discovery -- the Fermi data for a bright burst, GRB 080916C, unambiguously shows that the high energy photons (>= 100MeV) were generated in the external shock via the synchrotron process, and the lower energy photons had a distinctly different source. The magnetic field in the region where high energy photons were produced (and also the late time afterglow emission region) is found to be consistent with shock compressed magnetic field of the circum-stellar medium. This result sheds light on the important question of the origin of magnetic fields required for gamma-ray burst afterglows. The external shock model for high energy radiation makes a firm prediction that can be tested with existing and future observations.

Comments: 5 pages, 3 figures: Expanded introduction and added Figure 3. Accepted for publication in MNRAS Letters
Journal: MNRAS Letters 400 (2009) L75-L79
Categories: astro-ph.HE
Related articles: Most relevant | Search more
arXiv:2107.01524 [astro-ph.HE] (Published 2021-07-04)
Jitter radiation: towards TeV-photons of gamma-ray bursts
arXiv:2308.12672 [astro-ph.HE] (Published 2023-08-24)
The classification and categorisation of Gamma-Ray Bursts with machine learning techniques for neutrino detection
arXiv:0907.1661 [astro-ph.HE] (Published 2009-07-09)
GRB 090426: The Environment of a Rest-Frame 0.35-second Gamma-Ray Burst at Redshift z=2.609