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Simulations of solar filament fine structures and their counterstreaming flows

机译:太阳能丝细结构的模拟及其孤立流动

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Solar filaments, also called solar prominences when appearing above the solar limb, are cold, dense materials suspended in the hot tenuous solar corona, consisting of numerous long, fibril-like threads. These threads are the key to disclosing the physics of solar filaments. Similar structures also exist in galaxy clusters. Besides their mysterious formation, filament threads are observed to move with alternating directions, which are called counterstreaming flows. However, the origin of these flows has not been clarified yet. Here we report that turbulent heating at the solar surface is the key, which randomly evaporates materials from the solar surface to the corona, naturally reproducing the formation and counterstreamings of the sparse threads in the solar corona. We further suggest that while the cold Hα counterstreamings are mainly due to longitudinal oscillations of the filament threads, there are million-kelvin counterstreamings in the corona between threads, which are alternating unidirectional flows.
机译:太阳能丝,也称为太阳能突出,在太阳肢体上方出现时,是冷,致密的材料悬挂在热脆弱的太阳能电晕中,由众多长,原纤维状螺纹组成。这些螺纹是披露太阳丝物理学的关键。 Galaxy簇中也存在类似的结构。除了它们神秘的形成之外,观察到灯丝线以与交替方向移动,交替方向被称为浓度流。但是,尚未澄清这些流量的起源。在这里,我们报告了太阳能表面的湍流加热是钥匙,其随机蒸发从太阳能表面到电晕的材料,自然再现太阳电晕中稀疏螺纹的形成和瞳孔。我们进一步表明,虽然冷HA级偏心侧主要是由于丝线的纵向振荡,但在螺纹之间的电晕中存在百万-Kelvin遇到的,这是交替的单向流动。

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