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首页> 外文期刊>Journal of physics, A. Mathematical and theoretical >Dynamical constraints from field line topology in magnetic flux tubes
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Dynamical constraints from field line topology in magnetic flux tubes

机译:磁力线管中磁力线拓扑的动态约束

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A topological constraint on the dynamics of a magnetic field in a flux tube arises from the fixed point indices of its field line mapping. This can explain unexpected behaviour in recent resistive-magnetohydrodynamic simulations of magnetic relaxation. Here, we present the theory for a general periodic flux tube, representing, for example, a toroidal confinement device or a solar coronal loop. We show how an ideal dynamics on the side boundary of the tube implies that the sum of indices over all interior fixed points is invariant. This constraint applies to any continuous evolution inside the tube, which may be turbulent and/or dissipative. We also consider the analogous invariants obtained from periodic points (fixed points of the iterated mapping). Although there is a countably infinite family of invariants, we show that they lead to at most two independent dynamical constraints. The second constraint applies only in certain magnetic configurations. Several examples illustrate the theory.
机译:通量管中磁场动力学的拓扑约束是由其磁力线图的定点索引引起的。这可以解释最近的磁弛豫的电阻磁流体动力学模拟中的意外行为。在这里,我们介绍了一般周期性磁通量管的理论,例如代表环形限制装置或太阳日冕环。我们展示了管子侧面边界上的理想动力学如何暗示所有内部固定点上的指标之和是不变的。该约束适用于管内部的任何连续演变,这可能是湍流和/或耗散的。我们还考虑了从周期点(迭代映射的固定点)获得的类似不变式。尽管有无数个不变式族,但我们表明它们最多导致两个独立的动力学约束。第二个约束仅适用于某些磁性配置。有几个例子说明了这一理论。

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