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The development of lower-atmosphere turbulence early in a solar flare

机译:太阳耀斑早期低层湍流的发展

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摘要

We present the first observational study of the onset and evolution of solar flare turbulence in the lower solar atmosphere on an unprecedented time scale of 1.7 s using the Interface Region Imaging Spectrograph observing plasma at a temperature of 80,000 K. At this time resolution, nonthermal spectral line broadening, indicating turbulent velocity fluctuations, precedes the flare onset at this temperature and is coincident with net blue-shifts. The broadening decreases as the flare brightens and then oscillates with a period of ~10 s. These observations are consistent with turbulence in the lower solar atmosphere at the flare onset, heating that region as it dissipates. This challenges the current view of energy release and transport in the standard solar flare model, suggesting that turbulence partly heats the lower atmosphere.
机译:我们使用界面区域成像光谱仪在80,000 K的温度下观察等离子体,在1.7 s的空前时间尺度上,对低太阳大气中太阳耀斑湍流的发生和演化进行了首次观察性研究。在此时间分辨率下,非热光谱线变宽,表明湍流速度波动,在此温度下爆发开始之前,并且与净蓝移一致。随着耀斑变亮,加宽减小,然后以〜10 s的周期振荡。这些观察结果与火炬开始时较低太阳大气中的湍流一致,并在该区域消散时加热了该区域。这对标准太阳耀斑模型中当前的能量释放和传输观点提出了挑战,表明湍流部分地加热了低层大气。

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