首页> 外文期刊>The Astrophysical journal >MAGNETIC FIELD LINE RANDOM WALK FOR DISTURBED FLUX SURFACES: TRAPPING EFFECTS AND MULTIPLE ROUTES TO BOHM DIFFUSION
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MAGNETIC FIELD LINE RANDOM WALK FOR DISTURBED FLUX SURFACES: TRAPPING EFFECTS AND MULTIPLE ROUTES TO BOHM DIFFUSION

机译:扰动通量表面的磁场线随机游动:束缚效应和波状扩散的多重路径。

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The magnetic field line random walk (FLRW) is important for the transport of energetic particles in many astrophysical situations. While all authors agree on the quasilinear diffusion of field lines for fluctuations that mainly vary parallel to a large-scale field, for the opposite case of fluctuations that mainly vary in the perpendicular directions, there has been an apparent conflict between concepts of Bohm diffusion and percolation/trapping effects. Here computer simulation and non-perturbative analytic techniques are used to re-examine the FLRW in magnetic turbulence with slab and two-dimensional (2D) components, in which 2D flux surfaces are disturbed by the slab fluctuations. Previous non-perturbative theories for D ⊥, based on Corrsin's hypothesis, have identified a slab contribution with quasilinear behavior and a 2D contribution due to Bohm diffusion with diffusive decorrelation (DD), combined in a quadratic formula. Here we present analytic theories for other routes to Bohm diffusion, with random ballistic decorrelation (RBD) either due to the 2D component itself (for a weak slab contribution) or the total fluctuation field (for a strong slab contribution), combined in a direct sum with the slab contribution. Computer simulations confirm the applicability of RBD routes for weak or strong slab contributions, while the DD route applies for a moderate slab contribution. For a very low slab contribution, interesting trapping effects are found, including a depressed diffusion coefficient and subdiffusive behavior. Thus quasilinear, Bohm, and trapping behaviors are all found in the same system, together with an overall viewpoint to explain these behaviors.
机译:磁场线随机游走(FLRW)在许多天体物理情况下对于高能粒子的运输很重要。尽管所有作者都同意,对于主要平行于大尺度场变化的波动,场线的拟线性扩散,但对于主要在垂直方向上变化的波动的相反情况,波姆扩散与电磁场之间存在明显的冲突。渗滤/陷井效应。在这里,计算机仿真和非扰动分析技术被用来重新检查平板和二维(2D)分量在电磁湍流中的FLRW,其中二维磁通面受到平板波动的干扰。以前基于Corrsin假设的D non非扰动理论已经确定了具有准线性行为的平板贡献和归因于Bohm扩散且具有扩散去相关(DD)的二维贡献,并结合了一个二次公式。在这里,我们介绍了到Bohm扩散的其他途径的解析理论,其中由于2D分量本身(对于薄板的贡献)或总波动场(对于强大的板的贡献)所导致的随机弹道解相关(RBD),直接组合加上平板的贡献。计算机模拟证实了RBD路线适用于弱或强板坯贡献,而DD路线适用于中等板坯贡献。对于极低的板坯贡献,发现了有趣的俘获效应,包括降低的扩散系数和亚扩散行为。因此,在同一系统中都发现了准线性,Bohm和俘获行为,以及用于解释这些行为的总体观点。

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