Particle diffusion in turbulent fields: transition from quasilinear to nonlinear stage

O. Ishihara
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Abstract

Charged particles in random electric fields are known to diffuse over the phase velocity resonant layer in velocity space, whereas charged particles placed in a sheared magnetic field diffuse over the mode rational surfaces due to E*B random fluctuations. The author has studied in detail the transition of particle diffusion in turbulent fields from the quasilinear (constant diffusion rate) to the nonlinear (time dependent rate) regime by numerical experiments with test particles. The author has observed that the particle diffusion rate deviates from the quasilinear value and depends on the time at which the amplitude of the random field becomes larger. Such a transition from quasilinear to nonlinear diffusion is observed without particle loss from the resonance region. The time-dependent diffusion coefficient can be explained by the effect of retarded friction caused by turbulent fluctuations.<>
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湍流场中的粒子扩散:从拟线性到非线性阶段的过渡
随机电场中的带电粒子在速度空间中的相速度共振层上扩散,而剪切磁场中的带电粒子由于E*B随机波动而在模有理表面上扩散。通过实验,详细研究了颗粒在湍流场中的扩散由准线性(恒定扩散速率)向非线性(随时间变化速率)的转变。作者观察到粒子扩散速率偏离拟线性值,并与随机场振幅变大的时间有关。这种从拟线性扩散到非线性扩散的转变在共振区没有粒子损失。随时间变化的扩散系数可以用紊流波动引起的延迟摩擦效应来解释
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