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Existence of three-dimensional ideal-magnetohydrodynamic equilibria with current sheets

机译:具有电流表的三维理想磁流体动平衡的存在

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摘要

We consider the linear and nonlinear ideal plasma response to a boundary perturbation in a screw pinch. We demonstrate that three-dimensional, ideal-MHD equilibria with continuously nested flux-surfaces and with discontinuous rotational-transform across the resonant rational-surfaces are well defined and can be computed both perturbatively and using fully nonlinear equilibrium calculations. This rescues the possibility of constructing MHD equilibria with current sheets and continuous, smooth pressure profiles. The results predict that, even if the plasma acts as a perfectly conducting fluid, a resonant magnetic perturbation can penetrate all the way into the center of a tokamak without being shielded at the resonant surface.
机译:我们考虑线性和非线性理想等离子体对螺旋夹中的边界扰动的响应。我们证明,具有连续嵌套的通量表面和在共振有理表面上具有不连续旋转变换的三维理想MHD平衡是定义明确的,并且可以微扰地计算,也可以使用完全非线性平衡计算来计算。这就消除了用当前工作表和连续,平滑的压力曲线构造MHD平衡的可能性。结果预测,即使等离子体充当完美的导电流体,共振磁扰动也可以一直穿透到托卡马克的中心,而不会在共振表面被屏蔽。

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