Consequences of the gamma-gamma attenuation in GRBs: a detailed study
R. Hasco\"et, F. Daigne, R. Mochkovitch, V. Vennin (UPMC - CNRS,, Institut d'Astrophysique de Paris)

TL;DR
This paper presents a detailed model of gamma-gamma attenuation in GRBs, showing that previous estimates of the Lorentz factor are often too high and exploring various observational consequences of gamma-ray annihilation.
Contribution
It introduces a comprehensive calculation of gamma-gamma optical depth considering jet geometry and dynamics, refining constraints on the Lorentz factor in GRBs.
Findings
Lowered the estimated minimum Lorentz factor compared to previous models.
Predicted a gradual gamma-gamma cutoff in spectra rather than a sharp exponential decay.
Explained how gamma-gamma opacity affects the timing and features of high-energy GRB light curves.
Abstract
Recent detections of GeV photons in a few GRBs by Fermi-LAT have led to strong constraints on the bulk Lorentz factor in GRB outflows. To avoid a large gamma-gamma optical depth, minimum values of the Lorentz factor have been estimated to be as high as 800-1200 in some bursts. Here we present a detailed calculation of the gamma-gamma optical depth taking into account both the geometry and the dynamics of the jet. In the framework of the internal shock model, we compute lightcurves in different energy bands and the corresponding spectrum and we show how the limits on the Lorentz factor can be significantly lowered compared to previous estimates. Our detailed model of the propagation of high energy photons in GRB outflows is also appropriate to study many other consequences of gamma-gamma annihilation in GRBs: (i) the gamma-gamma cutoff transition in a time-integrated spectrum is expected…
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Taxonomy
TopicsGamma-ray bursts and supernovae · Nuclear Physics and Applications · Astro and Planetary Science
