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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Two-dimensional hybrid simulations of superdiffusion at the magnetopause driven by Kelvin-Helmholtz instability
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Two-dimensional hybrid simulations of superdiffusion at the magnetopause driven by Kelvin-Helmholtz instability

机译:二维混合模拟在磁层由superdiffusionKelvin-Helmholtz不稳定

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This paper describes the self-consistent simulation of plasma transport across the magnetic field at the magnetopause driven by Kelvin-Helmholtz (KH) instability. , Two-dimensional hybrid (kinetic ions, fluid electrons) simulations of the most KH-unstable configuration where the shear flow is oriented perpendicular to the uniform magnetic field are carried out. The motion of the simulation particles is tracked during the run in order to calculate their mean-square displacement normal to the initial magnetopause surface, from which diffusion coefficients may be determined. The diffusion coefficients are found to be time dependent, with D oc t a, where a > 0. Additionally, the probability distribution functions (PDF) of the "jump lengths" the particles make over time are found to be non-Gaussian. Such time-dependent diffusion coefficients and non-Gaussian PDFs have been associated with so-called "superdiffusion," in which diffusive mixing of particles is enhanced over classical diffusion. The results indicate that while smaller-scale turbulence associated with the breakdown of vortices contributes to this enhanced diffusion, the growth of large-scale, coherent vortices is the more important process in facilitating it.
机译:本文描述了自洽模拟等离子体传输的在磁层由磁场Kelvin-Helmholtz (KH)不稳定。二维混合(动态离子液体最KH-unstable电子)的模拟配置在剪切流导向垂直于均匀磁场执行。为了运行期间粒子跟踪计算它们的位移均正常初始磁层表面,扩散系数可以确定。扩散系数是时间依赖,D oc t, > 0。此外,该概率分布函数(PDF)的“跳长度”颗粒随着时间的推移,发现非高斯。系数和非高斯pdf文档与所谓的“superdiffusion”增强粒子的扩散混合是哪家在古典扩散。虽然小规模的波动有关与漩涡造成的故障的增长,这增强扩散大规模的,连贯的漩涡是更多重要的过程在促进它。

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