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The coupling of stimulated Raman and Brillouin scattering in a plasma

机译:受激拉曼和布里渊散射在等离子体中的耦合

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摘要

The observation of an anti-Stokes satellite in the spectrum of light backscattered from a CO2 laser plasma is reported. Its origin is found to be Thomson scattering of the incident light from a counterpropagating mode-coupled plasma wave. The parent electron and ion waves in the mode-coupling process were driven by stimulated Raman and Brillouin backscattering. The parent and daughter plasma waves were detected by ruby laser Thomson scattering. A computer simulation modeling the experiment shows further cascading of the Stokes backscattered light to lower frequencies, apparently a result of its rescattering from another, higher phase velocity, counterpropagating coupled mode. Comparisons with theoretical predictions are presented.
机译:据报道,在从二氧化碳激光等离子体反向散射的光谱中观察到了反斯托克斯卫星。发现其起源是来自对向传播模式耦合等离子体波的入射光的汤姆森散射。模耦合过程中的母体电子和离子波是由受激拉曼和布里渊反向散射驱动的。通过红宝石激光汤姆森散射检测母体和子体等离子体波。计算机模拟实验表明,斯托克斯反向散射光进一步级联到较低频率,这显然是由于斯托克斯反向散射光从另一种较高相速度,反向传播的耦合模式中散射出来的结果。提出了与理论预测的比较。

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