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The role of diffusion in the transport of energetic electrons during solar flares

机译:太阳耀斑期间扩散在高能电子传输中的作用

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摘要

The transport of the energy contained in suprathermal electrons in solar flares plays a key role in our understanding of many aspects of flare physics, from the spatial distributions of hard X-ray emission and energy deposition in the ambient atmosphere to global energetics. Historically the transport of these particles has been largely treated through a deterministic approach, in which first-order secular energy loss to electrons in the ambient target is treated as the dominant effect, with second-order diffusive terms (in both energy and angle) generally being either treated as a small correction or even neglected. Here, we critically analyze this approach, and we show that spatial diffusion through pitch-angle scattering necessarily plays a very significant role in the transport of electrons. We further show that a satisfactory treatment of the diffusion process requires consideration of non-local effects, so that the electron flux depends not just on the local gradient of the electron distribution function but on the value of this gradient within an extended region encompassing a significant fraction of a mean free path. Our analysis applies generally to pitch-angle scattering by a variety of mechanisms, from Coulomb collisions to turbulent scattering. We further show that the spatial transport of electrons along the magnetic field of a flaring loop can be modeled rather effectively as a Continuous Time Random Walk with velocity-dependent probability distribution functions of jump sizes and occurrences, both of which can be expressed in terms of the scattering mean free path.
机译:太阳耀斑中超热电子中所含能量的传输在理解耀斑物理学的许多方面起着关键作用,从硬X射线发射的空间分布和周围大气中的能量沉积到全球高能学。从历史上看,这些粒子的传输主要通过确定性方法进行处理,在该方法中,将环境目标中一阶向电子的长期能量损失视为主导效应,通常使用二阶扩散项(在能量和角度上)被视为小改正甚至被忽略。在这里,我们批判性地分析了这种方法,并且我们表明通过螺距角散射进行的空间扩散必定在电子的传输中起着非常重要的作用。我们进一步表明,对扩散过程的满意处理需要考虑非局部效应,因此电子通量不仅取决于电子分布函数的局部梯度,还取决于在包含显着性的扩展区域内该梯度的值。平均自由程的分数。我们的分析通常适用于通过各种机制(从库仑碰撞到湍流散射)的俯仰角散射。我们进一步证明,沿着扩张环磁场的电子空间传输可以相当有效地建模为连续时间随机游走,具有跳跃大小和发生次数的速度相关概率分布函数,两者都可以表示为散射平均自由程。

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