Maximum Orbit Excursion Near Magnetoresonance In A Magnetostatic Wiggler With A Guide Magnetic Field

Junsheng Yu, W. Gillespie
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Abstract

The complex coefficients of this reduced equation are computed by numerical solution of appropriate eigenvalue problems. In conjunction with these analytical calculations, a highly accurate spectral code has been used to directly simulate the forced, circular shear flows. Both the analytical and the numerical results are in excellent agreement with fluid experiments [3] and show the same qualitative behaviour as the plasma experiments [l, 21, where a detailed quantitative comparison is difficult due to limitations in the experimental information. Our two approaches supplement each other in predicting the trasition to states of ever increasing complexity, even beyond regimes that have so far been experimentally accessible.
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带导向磁场的静磁摆动器在磁共振附近的最大轨道偏移
通过适当的特征值问题的数值求解,计算了该简化方程的复系数。结合这些分析计算,高精度的谱代码已被用于直接模拟强迫,圆形剪切流。解析和数值结果都与流体实验[3]非常吻合,并表现出与等离子体实验相同的定性行为[1,21],而等离子体实验由于实验信息的限制,难以进行详细的定量比较。我们的两种方法在预测向日益复杂的状态的过渡方面相辅相成,甚至超越了迄今为止实验上可获得的制度。
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