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Effects of the frequency detuning in Raman backscattering of infinitely long laser pulses in plasmas

机译:频率失谐对等离子体中无限长激光脉冲的拉曼反向散射的影响

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摘要

Raman backscattering (RBS) in an infinite homogeneous laser-plasma system was investigated with the three-wave fluid model and averaged particle-in-cell (aPIC) simulations in the nonrelativistic and low temperature regime. It was found that the periodic boundary condition for the electrostatic potential, which is commonly used in an infinite homogeneous plasma, induces a numerical frequency shift of the plasma wave. The initial frequency detuning between the three waves is modified by the frequency shift, leading to a significantly wrong result in the RBS system. An alternative boundary condition based on the Maxwell equation is presented. The aPIC simulations with the modified boundary condition show that the pump depletion level depends sensitively on the frequency mismatch between the three waves. This sensitivity is closely related with the erroneous RBS: the numerical frequency shift is very minor (a few percent of the plasma frequency or less than that) but RBS can be greatly affected even by such a small frequency change. Analytic formulas for the pump depletion time and level is derived and compared to the aPIC simulations with the modified boundary condition, showing an excellent agreement. (c) 2006 American Institute of Physics.
机译:在非相对论和低温条件下,利用三波流体模型和平均胞内粒子(aPIC)模拟,研究了无限均匀激光等离子体系统中的拉曼反向散射(RBS)。已经发现,在无限均匀的等离子体中通常使用的静电势的周期性边界条件引起等离子体波的数值频移。这三个波之间的初始频率失谐通过频率偏移进行修改,从而导致RBS系统中的结果明显错误。提出了基于麦克斯韦方程的替代边界条件。具有修改后的边界条件的aPIC仿真表明,泵的损耗水平敏感地取决于三个波之间的频率失配。这种灵敏度与错误的RBS密切相关:数值频率偏移非常小(仅等离子频率的百分之几或更少),但是即使频率变化很小,RBS也会受到很大影响。推导了泵消耗时间和液位的解析公式,并将其与修改后的边界条件的aPIC仿真进行了比较,显示出极好的一致性。 (c)2006年美国物理研究所。

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