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Propagation and amplification of microwave radiation in a plasma channel created in gas by a high-power femtosecond UV laser pulse

机译:高功率飞秒紫外线激光脉冲在气体产生的等离子体通道中传播和放大微波辐射

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摘要

The time evolution of a nonequilibrium plasma channel created in a noble gas by a high-power femtosecond KrF laser pulse is investigated. It is shown that such a channel possesses specific electrodynamic properties and can be used as a waveguide for efficient transportation and amplification of microwave pulses. The propagation of microwave radiation in a plasma waveguide is analyzed by self-consistently solving (i) the Boltzmann kinetic equation for the electron energy distribution function at different spatial points and (ii) the wave equation in the parabolic approximation for a microwave pulse transported along the plasma channel.
机译:研究了高功率飞秒KrF激光脉冲在稀有气体中产生的非平衡等离子体通道的时间演化。结果表明,这种通道具有特定的电动力学特性,可以用作有效传输和放大微波脉冲的波导。通过自洽求解(i)在不同空间点的电子能量分布函数的Boltzmann动力学方程和(ii)沿波导管传播的微波脉冲的抛物线近似中的波动方程,分析了等离子体波导中微波辐射的传播。等离子通道。

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