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Onset of stimulated Raman scattering of a laser in a plasma in the presence of hot drifting electrons

机译:在存在热漂移电子的情况下等离子体中激光的受激拉曼散射的发生

摘要

Stimulated Raman scattering of a laser in plasmas with energetic drifting electrons was investigated by analyzing the growth of interacting waves during the Raman scattering process. The Langmuir wave and scattered electromagnetic sideband wave grow initially and are dampened after attaining a maximum level that indicates a periodic exchange of energy between the pump wave and the daughter waves. The presence of energetic drifting electrons in the laser-produced plasma influences the stimulated Raman scattering process. The plasma wave generated by Raman scattering may be influenced by the energetic electrons, which enhance the growth rate of the instability. Our results show that the presence of energetic (hot) drifting electrons in a plasma has an important effect on the evolution of the interacting waves. This phenomenon is modeled via two-dimensional particle-in-cell simulations of the propagation and interaction of the laser under Raman instability. (C) 2015 AIP Publishing LLC
机译:通过分析拉曼散射过程中相互作用波的增长,研究了激光在高能漂移电子等离子体中的受激拉曼散射。朗缪尔波和散射的电磁边带波开始增长,并在达到最大水平后衰减,该最大水平表明泵浦波和子波之间有周期性的能量交换。激光产生的等离子体中高能漂移电子的存在会影响受激拉曼散射过程。通过拉曼散射产生的等离子体波可能会受到高能电子的影响,这会增加不稳定性的增长速度。我们的结果表明,等离子体中高能(热)漂移电子的存在对相互作用波的演化具有重要影响。这种现象是通过在拉曼不稳定性下激光的传播和相互作用的二维单元格模拟来建模的。 (C)2015 AIP Publishing LLC

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