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      Quasi-Thermal Comptonization and GRBs

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          Abstract

          Quasi-thermal Comptonization is an attractive alternative to the synchrotron process to explain the spectra of GRBs, even if we maintain other important properties of the internal shock scenario, implying a compact emitting region and an equipartition magnetic field. Photon-photon absorption and electron-positron pairs can play a crucial role: this process may lock the effective temperature in a narrow range and may be the reason why burst spectra have high energy cut-offs close to the rest mass-energy of the electron. If the progenitors of GRB are hypernovae, the circum-burst matter is dominated by the wind of the pre-hypernova star. The presence of this dense material has strong effects on the generation of the radiation of the burst and its afterglow.

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          Author and article information

          Journal
          08 June 1999
          Article
          10.1051/aas:1999339
          astro-ph/9906145
          48f00c0d-af16-4c2e-a0b0-e4afad2ecc8d
          History
          Custom metadata
          7 pages, contributed paper for the meeting: "Gamma-ray bursts: the first three minutes", Editors: J. Poutanen and R. Svensson
          astro-ph

          General astrophysics
          General astrophysics

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