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Raman amplification in plasma: thermal effects and damping

机译:等离子体中的拉曼放大:热效应和阻尼

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The role of thermal effects on Raman amplification are investigated. The direct effects of damping on the process are found to be limited, leading only to a decrease from the peak output intensity predicted by cold plasma models. However, the shift in plasma resonance due to the Bohm-Gross shift can have a much larger influence, changing the required detuning between pump and probe and introducing an effective chirp through heating of the plasma by the pump pulse. This "thermal chirp" can both reduce the efficiency of the interaction and alter the evolution of the amplified probe, avoiding the increase in length observed in the linear regime without significant pump depletion.rnThe influence of this chirp can be reduced by using a smaller ratio of laser frequency to plasma frequency, which simultaneously increases the growth rate of the probe and decreases the shift in plasma resonance. As such, thermal effects only serve to suppress the amplification of noise at low growth rates. The use of a chirped pump pulse can be used to suppress noise for higher growth rates, and has a smaller impact on the peak output intensity for seeded amplification.rnFor the parameter ranges considered, Landau damping was found to be negligible, as Landau damping rates are typically small, and the low collisionality of the plasma causes the process to saturate quickly.
机译:研究了热效应对拉曼放大的作用。发现阻尼对过程的直接影响是有限的,仅导致冷等离子体模型预测的峰值输出强度降低。但是,由于鲍姆-格罗斯(Bohm-Gross)偏移而引起的等离子体共振偏移会产生更大的影响,从而改变泵和探头之间所需的失谐,并通过泵脉冲加热等离子体而引入有效的chi。这种“热chi”既可以降低相互作用的效率,又可以改变扩增探针的进化,从而避免了在线性状态下观察到的长度增加,而没有明显的泵损耗。rn可以通过使用较小的比率来减小这种this的影响。激光频率与等离子体频率之间的关系,这同时提高了探针的生长速率并降低了等离子体共振的偏移。这样,热效应仅起到抑制低增长率下噪声放大的作用。 a泵浦脉冲的使用可以抑制噪声以实现更高的生长速率,并且对种子放大的峰值输出强度的影响较小。rn对于所考虑的参数范围,由于Landau阻尼率,Landau阻尼被忽略不计。等离子体通常很小,并且等离子体的低碰撞性导致该过程迅速饱和。

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