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Anomalous diffusion and exit time distribution of particle tracers in plasma turbulence model

机译:等离子体湍流模型中粒子示踪剂的异常扩散和出射时间分布

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To explore the character of transport in a plasma turbulence model with avalanche transport, the motion of tracer particles has been followed. Both the time evolution of the moments of the distribution function of the tracer particle radial positions, [parallel tor(t)-r(0)parallel to (n)], and their finite scale Lyapunov number are used to determine the anomalous diffusion exponent, nu. The numerical results show that the transport mechanism is superdiffusive with an exponent nu close to 0.88+/-0.07. The distribution of the exit times of particles trapped into stochastic jets is also determined. These particles have the lowest separation rate at the low resonant surfaces. (C) 2001 American Institute of Physics. [References: 29]
机译:为了探索在具有雪崩输运的等离子体湍流模型中的输运特性,跟踪了示踪粒子的运动。示踪剂粒子径向位置的分布函数的矩的时间演化[平行于(n)的tor(t)-r(0)平行]及其有限尺度的Lyapunov数均用于确定反常扩散指数,nu。数值结果表明,该传输机制是超扩散的,指数nu接近0.88 +/- 0.07。还确定了被捕获到随机射流中的粒子的出射时间的分布。这些颗粒在低共振表面处具有最低的分离率。 (C)2001美国物理研究所。 [参考:29]

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