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Temporary topological trapping and escape of charged particles in a flux tube as a cause of delay in time asymptotic transport

机译:临时拓扑捕获和通量管中带电粒子的逸出是时间渐近传输延迟的原因

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摘要

The scenario of temporary trapping of magnetic field lines and their subsequent suppressed diffusive escape from topological magnetic structures embedded in turbulence has been offered as a way to understand the persistence of "dropouts'', or sharp gradients in observed heliospheric energetic particle intensities. Here a set of numerical experiments is carried out to show the basic physics of this process: charged test particles can be temporarily trapped in flux tubes and then escape due to random turbulent perturbations in the magnetic field. The overall effect is a delay in the onset of time-asymptotic transport. We thus confirm that previous arguments based on field line transport are also applicable to test particle transport.
机译:暂时捕获磁场线并随后抑制其从湍流中嵌入的拓扑磁性结构中扩散扩散逸出的情况已被提供为一种方法,以了解“漏失”的持续性或观测到的日球高能粒子强度的陡峭梯度。一组数值实验表明了该过程的基本物理原理:带电的测试粒子可以暂时捕获在通量管中,然后由于磁场中的随机湍流扰动而逸出,总体效果是延迟了时间的开始。渐近输运因此,我们确认基于场线输运的先前论点也适用于测试粒子输运。

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