论文标题
多相非线性电子血浆波
Multiphase nonlinear electron plasma waves
论文作者
论文摘要
我们提出了一种在描述等离子体振荡的温暖流体方程系统中构建多相激发的方法。它是基于非线性电子等离子体波的自传激发,该波浪通过与小振幅chir频率的浮力驱动器相位锁定。我们通过对流体方程进行完全非线性数值模拟来证明这些多相波的激发。我们通过应用Whitham的平均拉格朗日程序来基于弱非线性分析理论的简化模型。简化的模型预测与温暖流体模拟的结果非常吻合。这种自动激发的多相波形成相干的准晶体结构,可以用作等离子体光子或加速设备。最后,我们讨论了血浆中非线性波的自动兴奋性激发所需的激光参数。
We present a method for constructing multiphase excitations in the generally non-integrable system of warm fluid equations describing plasma oscillations. It is based on autoresonant excitation of nonlinear electron plasma waves by phase locking with small amplitude chirped-frequency ponderomotive drives. We demonstrate the excitation of these multiphase waves by performing fully nonlinear numerical simulations of the fluid equations. We develop a simplified model based on a weakly nonlinear analytical theory by applying Whitham's averaged Lagrangian procedure. The simplified model predictions are in good agreement with the results from the warm fluid simulations. Such autoresonantly excited multiphase waves form coherent quasicrystalline structures, which can potentially be used as plasma photonic or accelerating devices. Finally, we discuss the laser parameters required for the autoresonant excitation of nonlinear waves in a plasma.