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Caustic structures in the spectrum of x-ray Compton scattering off electrons driven by a short intense laser pulse

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arxiv 1507.08868 v1 pith:S3DNBDNV submitted 2015-07-31 hep-ph physics.atom-phphysics.plasm-ph

classification hep-phphysics.atom-phphysics.plasm-ph
keywords lasercomptonpulseshortspectrumstructuresdrivenelectrons
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We study the Compton scattering of x-rays off electrons that are driven by a relativistically intense short optical laser pulse. The frequency spectrum of the laser-assisted Compton radiation shows a broad plateau in the vicinity of the laser-free Compton line due to a nonlinear mixing between x-ray and laser photons. Special emphasis is placed on how the shape of the short assisting laser pulse affects the spectrum of the scattered x-rays. In particular, we observe sharp peak structures in the plateau region, whose number and locations are highly sensitive to the laser pulse shape. These structures are interpreted as spectral caustics by using a semiclassical analysis of the laser-assisted QED matrix element.

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    This paper shows that replacing a photon with a classical laser field can coherently boost QED cross-sections and improve their energy scaling, for example sigma_1->1 ~ (omega/m)^4 versus sigma_2->2 ~ (omega/m)^6.

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