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Thermodynamics of supra-arcade downflows in solar flares

机译:太阳耀斑中超拱廊向下流动的热力学

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Context. Supra-arcade downflows (SADs) have been frequently observed during the gradual phase of solar flares near the limb. In coronal emission lines sensitive to flaring plasmas, they appear as tadpole-like dark voids against the diffuse fan-shaped “haze” above, flowing toward the well-defined flare arcade. Aims. We aim to investigate the evolution of SADs’ thermal properties, and to shed light on the formation mechanism and physical processes of SADs. Methods. We carefully studied several selected SADs from two flare events and calculated their differential emission measures (DEMs) as well as DEM-weighted temperatures using data obtained by the Atmospheric Imaging Assembly (AIA) onboard the Solar Dynamic Observatory. Results. Our analysis shows that SADs are associated with a substantial decrease in DEM above 4 MK, which is 1–3 orders of magnitude smaller than the surrounding haze as well as the region before or after the passage of SADs, but comparable to the quiet corona. There is no evidence for the presence of the SAD-associated hot plasma ( & 20 MK) in the AIA data, and this decrease in DEM does not cause any significant change in the DEM distribution as well as the DEM-weighted temperature, which supports this idea that SADs are density depletion. This depression in DEM rapidly recovers in the wake of the SADs studied, generally within a few minutes, suggesting that they are discrete features. In addition, we found that SADs in one event are spatio-temporally associated with the successive formation of post-flare loops along the flare arcade.
机译:上下文。在四肢附近的太阳耀斑逐渐发展阶段,经常出现超拱流(SADs)。在对耀斑等离子体敏感的日冕发射线中,它们像t似的黑洞出现在上面弥漫的扇形“雾”上,流向明确的火炬拱廊。目的我们旨在调查SAD热性能的演变,并阐明SAD的形成机理和物理过程。方法。我们仔细研究了两次耀斑事件中选定的几种SAD,并使用了太阳动态天文台上的大气成像组件(AIA)获得的数据计算了它们的差分排放量度(DEM)以及DEM加权温度。结果。我们的分析表明,SAD与4 MK以上的DEM显着降低有关,这比周围的雾度以及SAD通过之前或之后的区域小1-3个数量级,但与安静的电晕相当。在AIA数据中没有证据表明与SAD相关的热血浆(> 20 MK),并且DEM的这种降低不会引起DEM分布以及DEM加权温度的任何显着变化。支持SAD是密度耗尽的想法。在研究了SAD之后,DEM的这种下降通常会在几分钟之内迅速恢复,这表明它们是离散的特征。此外,我们发现,一次事件中的SAD与时空沿火炬拱廊的连续形成相伴。

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