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Entropy mode at a magnetic null point as a possible tool for indirect observation of nanoflares in the solar corona

机译:磁零点处的熵模式可能是间接观察太阳日冕中纳米耀斑的一种可能工具

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Aims. We aim to explore the dynamics of the entropy mode perturbation excited by an energy release in the vicinity of a magnetic null point that is embedded in a gravitationally stratified solar corona. Methods. We solve two-dimensional, time-dependent magnetohydrodynamic equations numerically to find spatial and temporal signatures of the entropy mode that is triggered impulsively by a spatially localized pulse of the gas pressure. Results. We find that the properties of the entropy mode are determined by the sign of the initial pressure pulse. The initial increase in the gas pressure creates, together with the magnetoacoustic-gravity waves, a?stationary void of the rarefied plasma at the launching place, associated with the entropy mode. In?contrast, an?initial decrease in the gas pressure, which corresponds to a rapid (or?catastrophic) cooling, forms a blob of the dense plasma at the launching place. Conclusions. The cool, dense blobs at magnetic null points may be observed in transition region and chromospheric spectral lines at coronal heights off the solar limb and may be associated with the places of nanoflare occurrence. Therefore, extensions of entropy mode studies may produce a diagnostic tool for indirect observations of nanoflares. The dense cool blobs may be affected by the gravity or carried by downflows, hence may initiate a coronal rain.
机译:目的我们旨在探索熵模式摄动的动力学,该熵模式扰动是由嵌入在重力分层的太阳电晕中的磁零点附近的能量释放激发的。方法。我们用数值方法求解二维的,与时间有关的磁流体动力学方程,以找到由气压的空间局部脉冲冲动触发的熵模式的时空特征。结果。我们发现,熵模的性质由初始压力脉冲的符号决定。气体压力的初始增加与磁声重力波一起在发射位置产生稀薄等离子体的静态空隙,与熵模有关。相反,对应于快速(或灾难性)冷却的气压的初始下降在发射位置形成了稠密等离子体的斑点。结论。磁性零点处的冷,致密斑点可以在距太阳肢冠状高度的过渡区域和色球光谱线中观察到,并且可能与纳米耀斑的发生位置有关。因此,熵模式研究的扩展可能会为间接观察纳米耀斑提供一种诊断工具。稠密的冷团可能受重力影响或受到顺流作用,因此可能引发日冕雨。

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