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STOCHASTIC ELECTRON ACCELERATION BY CASCADING FAST MODE WAVES IN IMPULSIVE SOLAR FLARES

机译:级联快速模式波在脉冲太阳耀斑中的随机电子加速

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摘要

We present a model for the acceleration of electrons from thermal to ultrarelativistic energies during an energy release fragment in an impulsive solar flare. Long-wavelength low-amplitude fast mode waves are assumed to be generated during the initial flare energy release (by, for example, large-scale restructuring of the magnetic field). These waves nonlinearly cascade to higher wavenumbers and eventually reach the dissipation range, whereupon they are transit-time damped by electrons in the tail of the thermal distribution. The electrons, in turn, are energized out of the tail and into substantially higher energies. We find that for turbulence energy densities much smaller than the ambient magnetic field energy density and comparable to the thermal particle energy density, and for a wide range of initial wavelengths, a sufficient number of electrons are accelerated to hard X-ray-producing energies on observed timescales. We suggest that MHD turbulence unifies electron and proton acceleration in impulsive solar flares, since a preceding study established that a second MHD mode (the shear Alfven wave) preferentially accelerates protons from thermal to gamma-ray line-producing energies.
机译:我们提出了一个模型,用于在脉冲太阳耀斑中的能量释放碎片期间将电子从热能加速到超相对论能量。假定在初始火炬能量释放期间产生了长波长低振幅快速模式波(例如,通过磁场的大规模重组)。这些波非线性地级联到更高的波数,并最终到达耗散范围,于是它们被热分布尾部的电子所衰减。反过来,电子从尾部被激发并变成实质上更高的能量。我们发现,对于湍流能量密度远小于环境磁场能量密度且与热粒子能量密度相当的情况,对于宽范围的初始波长,足够数量的电子被加速为硬X射线产生能量。观察到的时间尺度。我们认为,MHD湍流统一了脉冲太阳耀斑中的电子和质子加速,因为先前的研究表明,第二个MHD模式(剪切Alfven波)优先使质子从热能转化为产生伽玛射线的能量。

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