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Nonlinear propagation of intense short pulses through underdense plasmas

机译:强短脉冲通过低密度等离子体的非线性传播

摘要

Currently there is much interest in the interaction of high-intensity ultra-short laser pulses with plasmas. Applications include the recently proposed Fast Ignitor Concept for Inertial Confinement Fusion. In the present work we make an analytical investigation of nonlinear propagation of intense short pulses through underdense plasmas. When a laser beam is focused into a plasma, self-focusing and self-channeling can occur as a result of relativistic modification of electron mass in the laser field and the reduction of electron density on the focal region due to the expulsion of electrons by laser ponderomotive force. The paper presents a paraxial theory of self-focusing of intense laser pulses due to expulsion of plasma electrons produced by the extreme ponderomotive force of a focused laser pulse. The nonlinear dielectric constant, self-focusing equation relating the variation of beamwidth parameter with distance of propagation, self-trapping condition and critical power are evaluated. The results suggest a self-focusing of the laser pulse in the plasma.
机译:当前,人们对高强度超短激光脉冲与等离子体的相互作用非常感兴趣。应用包括最近提出的用于惯性约束融合的快速点火器概念。在当前的工作中,我们对通过短密度等离子体的强短脉冲的非线性传播进行了分析研究。当激光束聚焦到等离子体中时,由于激光场中电子质量的相对论性修改以及由于激光驱逐电子而导致的焦点区域电子密度降低,会发生自聚焦和自通道化质动力。本文提出了一种旁轴理论,该理论是由于聚焦激光脉冲的极重动能所产生的等离子体电子被驱出而引起的强激光脉冲的自聚焦。评估了非线性介电常数,自聚焦方程,该方程将束宽参数的变化与传播距离,自陷条件和临界功率联系起来。结果表明等离子体中激光脉冲的自聚焦。

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