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首页> 外文期刊>The Astrophysical journal >Perpendicular Transport Of Energetic Charged Particles In Nonaxisymmetric Two-component Magnetic Turbulence
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Perpendicular Transport Of Energetic Charged Particles In Nonaxisymmetric Two-component Magnetic Turbulence

机译:非轴对称两分量电磁湍流中高能带电粒子的垂直传输

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We examine energetic charged particle diffusion perpendicular to a mean magnetic field B_0 due to turbulent fluctuations in a plasma, relaxing the common assumption of axisymmetry around B_0 and varying the ratio of two fluctuation components, a slab component with parallel wavenumbers and a two-dimensional (2D) component with perpendicular wavenumbers. We perform computer simulations mostly for 80% 2D and 20% slab energy and a fluctuation amplitude on the order of B_0. The nonlinear guiding center (NLGC) theory provides a reasonable description of asymptotic perpendicular diffusion as a function of the nonaxisymmetry and particle energy. These values are roughly proportional to the particle speed times the field line diffusion coefficient, with a prefactor that is much lower than in the classical field line random walk model of particle diffusion. NLGC predicts a prefactor in closer agreement with simulations. Next we consider extreme fluctuation anisotropy and the approach to reduced dimensionality. For 99% slab fluctuation energy, field line trajectories are diffusive, but the particle motion is subdiffusive. For 99% 2D fluctuation energy, both field lines and particle motions are initially subdiffusive and then diffusive, but NLGC gives unreliable results. The time dependence of the running particle diffusion coefficient shows that in all cases asymptotic diffusion is preceded by free streaming and subdiffusion, but the latter differs from standard compound subdiffusion. We can model the time profiles in terms of a decaying negative correlation of the perpendicular velocity due to the possibility of backtracking along magnetic field lines.
机译:我们检查了由于等离子体中的湍流波动而引起的垂直于平均磁场B_0的高能带电粒子扩散,放宽了B_0周围轴对称的常见假设,并改变了两个波动分量,具有平行波数的平板分量和二维( 2D)具有垂直波数的分量。我们主要针对80%的2D和20%的板坯能量以及B_0量级的波动幅度执行计算机模拟。非线性导引中心(NLGC)理论提供了渐近垂直扩散作为非轴对称性和粒子能量的函数的合理描述。这些值大致与粒子速度乘以场线扩散系数成正比,其前置因子比粒子扩散的经典场线随机游走模型低得多。 NLGC预测与模拟更接近的因素。接下来,我们考虑极端波动各向异性和降维方法。对于平板波动能量为99%的情况,场线轨迹具有扩散性,而粒子运动具有次扩散性。对于99%的2D波动能量,场线和粒子运动最初都是亚扩散的,然后是扩散的,但是NLGC给出的结果不可靠。运行粒子扩散系数的时间依赖性表明,在所有情况下,渐近扩散先于自由流和亚扩散,但后者不同于标准化合物的亚扩散。由于沿磁场线回溯的可能性,我们可以用垂直速度的衰减负相关性来建模时间剖面。

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