γ-ray bursts are produced by the dissipation of the kinetic energy of a highly relativistic fireball, via the formation of a collisionless shock. When this happens, ultrahigh energy cosmic rays up to ≈10²⁰eV are produced. I show in this Letter that these particles produce, via synchrotron emission as they cross the acceleration region, photons up to 300 GeV, which carry away a small, ≈0.01, but non-negligible fraction of the total burst energy. I show that, when the shock occurs with the interstellar medium, the optical depth to photon-photon scattering, which might cause energy degradation of the photons, is small. Expected fluences, ≈10^-5--10^-6ergcm^-2, are within the range of planned detectors.
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M. Vietri (1997) studied this question.
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