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Static current-sheet models of quiescent prominences

机译:静态突出的静态电流表模型

摘要

A particular class of theoretical models idealize the prominence to be a discrete flat electric-current sheet suspended vertically in a potential magnetic field. The weight of the prominence is supported by the Lorentz force in the current sheet. These models can be extended to have curved electric-current sheets and to vary three-dimensionally. The equation for force balance is 1 over 4 pi (del times B) times Bdel p- p9 z=zero. Using Cartesian coordinates we take, for simplicity, a uniform gravity with constant acceleration g in the direction -z. If we are interested not in the detailed internal structure of the prominence, but in the global magnetic configuration around the prominence, we may take prominence plasma to be cold. Consideration is given to how such equilibrium states can be constructed. To simplify the mathematical problem, suppose there is no electric current in the atmosphere except for the discrete currents in the cold prominence sheet. Let us take the plane z =0 to be the base of the atmosphere and restrict our attention to the domain z greater than 0. The task we have is to solve for a magnetic field which is everywhere potential except on some free surface S, subject to suit able to boundary conditions. The surface S is determined by requiring that it possesses a discrete electric current density such that the Lorentz force on it is everywhere vertically upward to balance the weight of the material m(S). Since the magnetic field is potential in the external atmosphere, the latter is decoupled from the magnetic field and its plane parallel hydrostatic pressure and density can be prescribed.
机译:一类特殊的理论模型将突出部分理想化为垂直悬浮在势场中的离散平面电流片。当前工作表中的洛伦兹力支撑着突出的重量。这些模型可以扩展为具有弯曲的电流表并在三维上变化。力平衡方程为4 pi(del乘以B)乘以Bdel p- p9 z =零。为了简单起见,我们使用笛卡尔坐标,在-z方向上以恒定加速度g取均匀的重力。如果我们对突出物的详细内部结构不感兴趣,而对突出物周围的整体磁性构造感兴趣,则可以使突出物等离子体变冷。考虑如何构造这种平衡态。为了简化数学问题,假设除了冷突出板上的离散电流外,大气中没有电流。让我们将平面z = 0设为大气的基础,并将注意力集中在大于0的域z上。我们的任务是解决一个磁场,该磁场无处不在,除了某些自由表面S以外,以适应边界条件。通过要求表面S具有离散的电流密度来确定表面S,以使表面上的洛伦兹力垂直向上都在各处,以平衡材料m(S)的重量。由于磁场在外部大气中是潜在的,因此外部大气与磁场分离,可以规定其平面平行的静水压力和密度。

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    Wu F.; Low B. C.;

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  • 年度 1986
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