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March 18, 1996Physical Review Letters420 citations

Laser Injection of Ultrashort Electron Pulses into Wakefield Plasma Waves

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DUD. UmstadterJKJ.K. KimEDE. S. Dodd

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Abstract

A novel laser-plasma-based source of relativistic electrons is described. It involves a combination of orthogonally directed laser beams, which are focused in a plasma. One beam excites a wakefield electron plasma wave. Another locally alters the trajectory of some of the electrons in such a way that they can be accelerated and trapped by the wave. With currently available table-top terawatt lasers, a single ultrashort-duration electron bunch can be accelerated to multi-MeV energies in a fraction of a millimeter, with femtosecond synchronization between the light pulse, the electron bunch, and the plasma wave. Both analytical and numerical-simulation results are presented.

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Umstadter et al. (1996) studied this question.

synapsesocial.com/papers/69f6e93a09cb8593b047d8b8https://doi.org/10.1103/physrevlett.76.2073
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