Test particle transport in stochastic magnetic fields modeled by stochastic processes

L. Hannibal
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引用次数: 6

Abstract

The theory of stochastic processes is applied to analyze the effect of magnetic‐field perturbations on the motion of classical charged particles. For arbitrary field fluctuations along the path of a particle, an approximate diffusion equation is obtained by means of the cumulant technique. The limit of white noise, in which the model is exact, and the difference between adiabatic and nonadiabatic motion are discussed. These cases relate results obtained for astrophysical plasmas and tokamak plasmas. It is shown that large longitudinal perturbations give rise to a new regime for diffusion perpendicular to the mean magnetic field.
测试粒子在随机过程模拟的随机磁场中的输运
应用随机过程理论分析了磁场扰动对经典带电粒子运动的影响。对于沿粒子路径的任意场波动,用累积量法得到了近似的扩散方程。讨论了模型精确的白噪声极限,以及绝热运动和非绝热运动的区别。这些案例涉及天体物理等离子体和托卡马克等离子体的结果。结果表明,大的纵向扰动会产生垂直于平均磁场的新扩散区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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