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Proposal for Plasma Wave Oscillator

机译:等离子波振荡器的建议

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Generation of radiation by laser pulses in uniform plasma is generally minimal. However, if one considers propagation in corrugated plasma channels, the condition for radiation generation can be met due to the inhomogeneity of the plasma channel and the presence of guided waves with subluminal phase velocities. For establishing a large amplitude plasma wave driven by moderate-power laser, one has to implement a distributed-feedback structure into the plasma (Plasma Wave Oscillator) with the feedback matching the plasma resonance. In this note the theoretical analysis for plasma waves driven by moderate-power laser for corrugated waveguide filled with pre-ionized hydrogen plasma has been developed. The growth of amplitude of plasma waves in corrugated structure, coupled to the laser and sideband fields has been investigated. The four coupled equations corresponding to laser field, sideband field and forward and backward plasma waves can be numerically solved for various parameters of the laser field, plasma density, and corrugated structure to arrive at experimental design of the Plasma Wave Oscillator, which may be used for the generation of radiation and particle acceleration.
机译:通常,在均匀等离子体中由激光脉冲产生的辐射很少。但是,如果考虑在波纹等离子体通道中传播,则由于等离子体通道的不均匀性和存在腔内相速的导波的存在,可以满足产生辐射的条件。为了建立由中功率激光器驱动的大振幅等离子体波,必须在等离子体(等离子体波振荡器)中实现一种分布式反馈结构,其反馈与等离子体共振相匹配。在此说明中,已开发出由中功率激光驱动的用于填充预电离氢等离子体的波纹波导的等离子体波的理论分析。研究了波纹结构中等离子体波振幅的增长,并与激光和边带场耦合。对于激光场,等离子体密度和波纹结构的各种参数,可以通过数值求解与激光场,边带场以及正向和反向等离子体波相对应的四个耦合方程,从而得出等离子波振荡器的实验设计,可以使用用于产生辐射和粒子加速。

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