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首页> 外文期刊>The Astrophysical journal >DYNAMICS OF CORONAL RAIN AND DESCENDING PLASMA BLOBS IN SOLAR PROMINENCES. II. PARTIALLY IONIZED CASE
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DYNAMICS OF CORONAL RAIN AND DESCENDING PLASMA BLOBS IN SOLAR PROMINENCES. II. PARTIALLY IONIZED CASE

机译:日冕中冠状雨和血浆下降的动力学。二。部分电离的情况

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Coronal rain clumps and prominence knots are dense condensations with chromospheric to transition region temperatures that fall down in the much hotter corona. Their typical speeds are in the range 30–150 km s?1 and of the order of 10–30 km s?1, respectively, i.e., they are considerably smaller than free-fall velocities. These cold blobs contain a mixture of ionized and neutral material that must be dynamically coupled in order to fall together, as observed. We investigate this coupling by means of hydrodynamic simulations in which the coupling arises from the friction between ions and neutrals. The numerical simulations presented here are an extension of those of Oliver et al. to the partially ionized case. We find that, although the relative drift speed between the two species is smaller than 1 m s?1 at the blob center, it is sufficient to produce the forces required to strongly couple charged particles and neutrals. The ionization degree has no discernible effect on the main results of our previous work for a fully ionized plasma: the condensation has an initial acceleration phase followed by a period with roughly constant velocity, and, in addition, the maximum descending speed is clearly correlated with the ratio of initial blob to environment density.
机译:日冕雨团和隆起结是致密的凝结,与色球层到过渡区的温度在更热的日冕中下降。它们的典型速度分别在30-150 km s?1的范围内,分别在10-30 km s?1的范围内,即,它们比自由落体速度小得多。这些冷的团块包含离子化和中性材料的混合物,必须将它们动态耦合才能在一起,这样才能观察到。我们通过流体动力学模拟研究这种耦合,其中耦合是由于离子和中性离子之间的摩擦引起的。此处提供的数值模拟是Oliver等人的扩展。到部分电离的情况。我们发现,尽管两种物质之间的相对漂移速度在斑点中心小于1 m s?1,但足以产生将带电粒子和中性粒子强耦合所需的力。电离度对我们先前对完全电离等离子体的工作的主要结果没有明显的影响:冷凝具有一个初始加速阶段,随后是一个大致恒定速度的周期,此外,最大下降速度显然与初始斑点与环境密度的比率。

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