Gamma-quanta capture by magnetic field and pair creation suppression in pulsars

Physics

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Electron-Positron Pairs, Gamma Rays, Pair Production, Pulsars, Radiation Trapping, Stellar Magnetic Fields, Electron Scattering, Magnetic Effects, Photons, Positrons, Pulsar Magnetospheres, Stellar Spectra

Scientific paper

It is shown that if the resonant behavior characteristics of the vacuum polarization in a magnetic field is considered, the gamma-quanta trajectories invoked in the modern theory of pulsars are bent in the direction of the magnetic field provided that (1) the latter is sufficiently intense, and (2) electron-positron pair creation is suppressed. The application of these modifications to the process of gamma-quanta capture in the magnetospheres of pulsars leads to the proposition of a quantitative theory which explains the radiation spectra of NP0532 and the Crab Nebula, which cannot be accounted for by the existing theory.

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