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Anomalous Diffusion of Inertial, Weakly Damped Particles

机译:惯性弱阻尼颗粒的反常扩散

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摘要

The anomalous (i.e., non-Gaussian) dynamics of particles subject to a deterministic acceleration and a series of "random kicks" is studied. Based on an extension of the concept of continuous time random walks to position-velocity space, a new fractional equation of the Kramers-Fokker-Planck type is derived. The associated collision operator necessarily involves a fractional substantial derivative, representing important nonlocal couplings in time and space. For the force-free case, a closed solution is found and discussed.
机译:研究了具有确定性加速度和一系列“随机踢”的粒子的异常(即非高斯)动力学。基于将连续时间随机游动的概念扩展到位置-速度空间,得出了Kramers-Fokker-Planck类型的新分数方程。相关的碰撞算子必然涉及分数的实质导数,表示时间和空间上的重要非局部耦合。对于无力的情况,找到并讨论了一个封闭的解决方案。

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