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December 29, 1997Physical Review Letters73 citations

Electron Beam Characteristics from Laser-Driven Wave Breaking

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KTK-C. TzengWMW. B. MoriTKT. Katsouleas

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Abstract

The generation of high-current (>kA), relativistic electron beams from the wave breaking of plasma waves generated by a highly nonlinear interaction between Raman scattering, self-heating, and self-focusing of high-power (>5TW), short-pulse (<1ps) lasers is examined in detail using a fully explicit particle-in-cell model. The resulting beams have a continuous energy spread with a maximum energy exceeding simple dephasing estimates. For a 5 J laser, a total of 210^11 electrons are accelerated, but 210^8 electrons are at 501MeV with a normalized emittance of 13.

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Cite This Study

Tzeng et al. (1997) studied this question.

synapsesocial.com/papers/6a8706b66fbb37794f7cb5dbhttps://doi.org/10.1103/physrevlett.79.5258
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