首页> 外文期刊>The Astrophysical journal >MAGNETOHYDROSTATIC EQUILIBRIUM. II. THREE-DIMENSIONAL MULTIPLE OPEN MAGNETIC FLUX TUBES IN THE STRATIFIED SOLAR ATMOSPHERE
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MAGNETOHYDROSTATIC EQUILIBRIUM. II. THREE-DIMENSIONAL MULTIPLE OPEN MAGNETIC FLUX TUBES IN THE STRATIFIED SOLAR ATMOSPHERE

机译:磁静态平衡。二。层状太阳能大气中的三维多开磁通管

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A system of multiple open magnetic flux tubes spanning the solar photosphere and lower corona is modeled analytically, within a realistic stratified atmosphere subject to solar gravity. This extends results for a single magnetic flux tube in magnetohydrostatic equilibrium, described in Gent et al. Self-similar magnetic flux tubes are combined to form magnetic structures, which are consistent with high-resolution observations. The observational evidence supports the existence of strands of open flux tubes and loops persisting in a relatively steady state. Self-similar magnetic flux tubes, for which an analytic solution to the plasma density and pressure distribution is possible, are combined. We calculate the appropriate balancing forces, applying to the equations of momentum and energy conservation to preserve equilibrium. Multiplex flux tube configurations are observed to remain relatively stable for up to a day or more, and it is our aim to apply our model as the background condition for numerical studies of energy transport mechanisms from the solar surface to the corona. We apply magnetic field strength, plasma density, pressure, and temperature distributions consistent with observational and theoretical estimates for the lower solar atmosphere. Although each flux tube is identical in construction apart from the location of the radial axis, combinations can be applied to generate a non-axisymmetric magnetic field with multiple non-uniform flux tubes. This is a considerable step forward in modeling the realistic magnetized three-dimensional equilibria of the solar atmosphere.
机译:在现实的分层大气中,受到太阳引力的作用,对跨越太阳光层和下部电晕的多个开放式磁通管系统进行了建模分析。这扩展了在静磁平衡中单个磁通管的结果,如Gent等人所述。将自相似的磁通量管组合在一起以形成磁性结构,这与高分辨率观测结果是一致的。观测证据支持存在开放的通量管束和回路以相对稳定的状态持续存在。将自相似的磁通管组合在一起,可以对等离子体密度和压力分布进行分析。我们计算适当的平衡力,将其应用于动量和能量守恒方程,以保持平衡。观察到多重通量管的配置在一天或更长的时间内保持相对稳定,我们的目标是将我们的模型作为背景条件,用于从太阳表面到日冕的能量传输机制的数值研究。我们应用磁场强度,等离子体密度,压力和温度分布,与较低太阳大气层的观测值和理论估计值一致。尽管除了径向轴线的位置以外,每个通量管在构造上都是相同的,但是可以应用组合以产生具有多个不均匀通量管的非轴对称磁场。这是在模拟现实的太阳大气磁化三维平衡方面迈出的重要一步。

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