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High Intensity Compton Scattering in a strong plane wave field of general form

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arxiv 1106.1671 v2 pith:SVU4EI3P submitted 2011-06-08 hep-th

High Intensity Compton Scattering in a strong plane wave field of general form

classification hep-th
keywords externalfieldgeneralprobabilitytransitionobtainedphasecase
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Photon emission by an electron embedded in a strong external field of general form is studied theoretically. The external field considered is a plane wave electromagnetic field of any number of components, period and polarisation. Exact, Volkov solutions of the Dirac equation with the 4-potential of the general external field are obtained. The photon emission is considered in the usual perturbation theory using the Volkov solutions to represent the electron. An expression for the transition probability of this process is obtained after the usual spin and polarisation sums, trace calculation and phase space integration. The final transition probability in the general case contains a single sum over contributions from external field photons and an integration over one of the phase space components. The validity of the general expression is established by considering specific external fields. Known specific analytic forms of the transition probability are obtained after substitution of the 4-potential for a circularly polarised and constant crossed external field. As an example usage of the general result for the transition probability, the case of two phase separated, circularly polarised external fields is studied both analytically and numerically.

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