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Early Abnormal Temperature Structure Of X-ray Loop-top Source Of Solar Flares

机译:X射线环顶太阳耀斑的早期温度异常结构

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This Letter is to investigate the physics of a newly discovered phenomenon-contracting flare loops in the early phase of solar flares. In classical flare models, which were constructed based on the phenomenon of the expansion of flare loops, an energy releasing site is put above flare loops. These models can predict that there is a vertical temperature gradient in the top of flare loops due to heat conduction and cooling effects. Therefore, the centroid of an X-ray loop-top source at higher energy bands will be higher in altitude, which we can define as the normal temperature distribution. With observations made by RHESSI, we analyzed 10 M- or X-class flares (9 limb flares). For all these flares, the movement of loop-top sources shows an obvious U-shaped trajectory, which we take as the signature of contraction-to-expansion of flare loops. We find that, for all these flares, a normal temperature distribution does exist, but only along the path of expansion. The temperature distribution along the path of contraction is abnormal, showing no spatial order at all. The result suggests that magnetic reconnection processes in the contraction and expansion phases of these solar flares are different.
机译:这封信是要研究太阳耀斑早期新发现的现象收缩耀斑环的物理现象。在基于火炬环膨胀现象构造的经典火炬模型中,能量释放部位位于火炬环上方。这些模型可以预测,由于热传导和冷却作用,火炬回路顶部会出现垂直温度梯度。因此,在较高能带处的X射线环顶光源的质心的高度会更高,我们可以将其定义为正态温度分布。通过RHESSI的观察,我们分析了10个M级或X级耀斑(9个肢体耀斑)。对于所有这些耀斑,环形顶部源的运动显示出明显的U形轨迹,我们将其视为耀斑环形收缩到扩展的标志。我们发现,对于所有这些耀斑,确实存在正常的温度分布,但仅沿膨胀路径。沿收缩路径的温度分布异常,根本没有显示空间顺序。结果表明,这些太阳耀斑的收缩和膨胀阶段的磁重连接过程是不同的。

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