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Breakdown of electrostatic predictions for the nonlinear dispersion relation of a stimulated Raman scattering driven plasma wave

机译:关于受激拉曼散射驱动等离子体波非线性色散关系的静电预测的分解

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摘要

The kinetic nonlinear dispersion relation, and frequency shift delta omega(srs), of a plasma wave driven by stimulated Raman scattering are presented. Our theoretical calculations are fully electromagnetic, and use an adiabatic expression for the electron susceptibility which accounts for the change in phase velocity as the wave grows. When k lambda(D)>= 0.35 (k being the plasma wave number and lambda(D) the Debye length), delta omega(srs) is significantly larger than could be inferred by assuming that the wave is freely propagating. Our theory is in excellent agreement with 1D Eulerian Vlasov-Maxwell simulations when 0.3 <= k lambda(D)<= 0.58, and allows discussion of previously proposed mechanisms for Raman saturation. In particular, we find that no "loss of resonance" of the plasma wave would limit the Raman growth rate, and that saturation through a phase detuning between the plasma wave and the laser drive is mitigated by wave number shifts. (C) 2008 American Institute of Physics.
机译:提出了由受激拉曼散射驱动的等离子体波的动力学非线性色散关系和频移Δω(srs)。我们的理论计算是完全电磁的,并且使用绝热表达式表示电子的磁化率,这说明了随着波的增长相速度的变化。当k lambda(D)> = 0.35(k是等离子波数,lambda(D)的德拜长度)时,δomega(srs)明显大于假定该波自由传播时可以推断出的值。当0.3 <= k lambda(D)<= 0.58时,我们的理论与1D Eulerian Vlasov-Maxwell模拟非常吻合,并允许讨论先前提出的拉曼饱和机制。特别地,我们发现等离子波的“共振损失”不会限制拉曼生长速率,并且等离子波与激光驱动器之间的相位失谐会通过波数移位减轻饱和。 (C)2008美国物理研究所。

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