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Nonequilibrium of Ionization and the Detection of Hot Plasma in Nanoflare-heated Coronal Loops

机译:纳米火炬加热冠状环中电离的非平衡和热等离子体的检测

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Impulsive nanoflares are expected to transiently heat the plasma confined in coronal loops to temperatures of the order of 10 MK. Such hot plasma is hardly detected in quiet and active regions, outside flares. During rapid and short heat pulses in rarefied loops, the plasma can be highly out of equilibrium in ionization. Here we investigate the effects of the nonequilibrium of ionization (NEI) on the detection of hot plasma in coronal loops. Time-dependent loop hydrodynamic simulations are specifically devoted to this task, including saturated thermal conduction, and coupled to the detailed solution of the equations of the ionization rate for several abundant elements. In our simulations, initially cool and rarefied magnetic flux tubes are heated to 10 MK by nanoflares deposited either at the footpoints or at the loop apex. We test for different pulse durations and find that, due to NEI effects, the loop plasma may never be detected at temperatures above ~5 MK for heat pulses shorter than about 1 minute. We discuss some implications in the framework of multistranded nanoflare-heated coronal loops.
机译:预计脉冲状纳米耀斑会暂时将局限在冠状环中的等离子体加热到10 MK量级的温度。在火炬外的安静和活跃区域几乎无法检测到这种热等离子体。在稀疏回路中快速而短的热脉冲期间,等离子体在电离中可能会严重失衡。在这里,我们研究了电离非平衡(NEI)对冠状环中热血浆检测的影响。随时间变化的回路流体动力学仿真专门用于此任务,包括饱和热传导,并与几种丰富元素的电离速率方程的详细解耦。在我们的模拟中,最初的冷却磁通稀疏的磁通管会通过在脚点或回路顶点处沉积的纳米喇叭口加热到10 MK。我们测试了不同的脉冲持续时间,发现由于NEI效应,对于短于大约1分钟的热脉冲,在高于〜5 MK的温度下可能永远都无法检测到回路等离子体。我们讨论了在多链纳米耀斑加热冠冕环的框架中的一些含义。

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