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April 3, 2000Physical Review Letters96 citations

Nonlinear Theory of Nonparaxial Laser Pulse Propagation in Plasma Channels

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EEE. EsareyCSC. B. SchroederBSB. A. Shadwick

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Abstract

Nonparaxial propagation of ultrashort, high-power laser pulses in plasma channels is examined. In the adiabatic limit, pulse energy conservation, nonlinear group velocity, damped betatron oscillations, self-steepening, self-phase modulation, and shock formation are analyzed. In the nonadiabatic limit, the coupling of forward Raman scattering (FRS) and the self-modulation instability (SMI) is analyzed and growth rates are derived, including regimes of reduced growth. The SMI is found to dominate FRS in most regimes of interest.

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Esarey et al. (2000) studied this question.

synapsesocial.com/papers/6a82485e47f72330e2ffb8cfhttps://doi.org/10.1103/physrevlett.84.3081
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