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首页> 外文期刊>Astronomy letters >Spherical magnetic vortex in a uniform gravity field: A new exact solution and its applications for modeling solar flares and coronal spiders
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Spherical magnetic vortex in a uniform gravity field: A new exact solution and its applications for modeling solar flares and coronal spiders

机译:均匀重力场中的球形磁涡旋:一种新的精确解及其在太阳耀斑和日冕蜘蛛建模中的应用

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摘要

The well-known Chandrasekhar-Prendergastmagnetostatic solution for a sphericalmagnetic vortex with axial symmetry squeezed externally by a potential magnetic field is of considerable interest both for describing the magnetic field of a star as a whole and for modeling solar active phenomena (flares, coronal spiders, etc.). This solution is generalized to the case of a uniform gravity field. In contrast to the Chandrasekhar-Prendergast model, the dependence of the plasma density in the spherical vortex on magnetic flux appears in the new solution. This expands considerably the class of magnetoplasma equilibria being analyzed and allows new scenarios for energy release in solar flares and coronal spiders to be proposed.
机译:众所周知的Chandrasekhar-Prendergast静磁解决方案是通过势磁场外部压缩轴向对称的球形磁涡旋,它既可以描述整个恒星的磁场,又可以用于模拟太阳活动现象(耀斑,日冕蜘蛛,等等。)。该解决方案被推广到均匀重力场的情况。与Chandrasekhar-Prendergast模型相反,新解决方案中出现了球形涡旋中的等离子体密度对磁通量的依赖性。这大大扩展了正在分析的磁浆平衡的类别,并允许提出在太阳耀斑和日冕蜘蛛中释放能量的新方案。

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