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The opposite evolution of spectral index of microwave and HXR emission in solar flare

机译:太阳耀斑微波和HXR发射光谱指标的相反演变

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This paper presents an unusual phenomenon for the evolution of spectral index of non-thermal electrons related to HXR and microwave emission in a M1.5 class flare. It is found that the light curves of both microwave and HXR bursts has similar two rise-peak-decay phases. The spectral index deduced from HXR emission evolves as S-H-S pattern in each phase, while the spectral index relative to microwave emission presents S-H-H pattern in the first rise-peak-decay phase and H-S-H pattern in second one. Weak diffusion is proposed to explain the different evolution in the first rise-peak-decay phase. For the second period, microwave spectrum is softened, which imply one new process for pitch angle scattering occur. Strong diffusion of trapped electrons could be the available cause, which result in the decreasing number of trapped electrons. In additional, the change of magnetic structure of flare loop may shift the location of magnetic mirrors and the upward shifting of magnetic mirrors could reduce the number of microwave emission at 17 GHz and soften the microwave spectrum.
机译:本文提出了一种不寻常的现象,用于与HXR和M1.5级耀斑中的HXR和微波排放有关的非热电子的光谱指数的演变的现象。发现微波和HXR突发的光曲线具有相似的两个上升峰衰减阶段。从HXR发射推导的光谱指数随着每个阶段的S-H-S模式而发展,而相对于微波发射的光谱指数在第二升高峰值衰减相和H-S-H模式中呈现S-H-H模式。提出弱扩散以解释第一升高峰衰减阶段的不同演化。对于第二个时段,微波谱进行软化,这意味着发生俯仰角散射的一个新方法。被困电子的强扩散可以是可用的原因,这导致捕获的电子数量减小。在另外,闪光环的磁性结构的变化可以换档磁镜的位置,并且磁镜的向上移位可以减少17 GHz的微波发射的数量并软化微波谱。

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