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Vlasov Simulations of Trapping and Inhomogeneity in Raman Scattering

机译:拉曼散射中陷阱和不均匀性的Vlasov模拟

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摘要

We study stimulated Raman scattering (SRS) in laser-fusion conditions with the Eulerian Vlasov code ELVIS. Back SRS from homogeneous plasmas occurs in sub-picosecond bursts and far exceeds linear theory. Forward SRS and re-scatter of back SRS are also observed. The plasma wave frequency downshifts from the linear dispersion curve, and the electron distribution shows flattening. This is consistent with trapping and reduces the Landau damping. There is some acoustic ($\omega\propto k$) activity and possibly electron acoustic scatter. Kinetic ions do not affect SRS for early times but suppress it later on. SRS from inhomogeneous plasmas exhibits a kinetic enhancement for long density scale lengths. More scattering results when the pump propagates to higher as opposed to lower density.
机译:我们用欧拉弗拉索夫代码ELVIS研究激光融合条件下的受激拉曼散射(SRS)。来自均质等离子体的反SRS发生在亚皮秒级爆发中,远远超出了线性理论。还观察到前向SRS和后向SRS的重新散射。等离子体波频率从线性弥散曲线下移,并且电子分布趋于平坦。这与陷波是一致的,并降低了Landau阻尼。有一些声($ \ω\ proto k $)活动,可能还有电子声散射。运动离子在早期不会影响SRS,但在以后会抑制它。来自非均质等离子体的SRS对于长密度标度长度显示出动力学增强。当泵传播到更高密度而不是更低密度时,会产生更多散射。

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