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Effect of ambipolar plasma flow on the penetration of resonant magnetic perturbations in a quasi-axisymmetric stellarator

A. Reiman, M. Zarnstorff, D. Mikkelsen, L. Owen, H. Mynick, S. Hudson, D. Monticello2005年被引用 5Nuclear FusionIF 3出版社

A reference equilibrium for the US National Compact Stellarator Experiment is predicted to be sufficiently close to quasi-symmetry to allow the plasma to flow in the toroidal direction with little viscous damping, yet to have sufficiently large deviations from quasi-symmetry that nonambipolarity significantly affects the physics of the shielding of resonant magnetic perturbations by plasma flow. The unperturbed velocity profile is modified by the presence of an ambipolar potential, which produces a broad velocity profile. In the presence of a resonant magnetic field perturbation, nonambipolar transport produces a radial current, and the resulting j × B force resists departures from the ambipolar velocity and enhances the shielding.

日本語訳

米国国立コンパクトステラレータ実験装置の基準平衡は、準対称性に十分近いため、プラズマが粘性減衰をほとんど受けずにトロイダル方向に流動できると予測される一方、準対称性からのずれが十分に大きいため、非双極性が共鳴磁気摂動のプラズマ流による遮蔽に有意に影響を及ぼす。摂動のない速度分布は、双極性電位の存在によって修正され、その結果、広い速度分布が生じる。共鳴磁気摂動の存在下では、非双極性輸送が半径方向電流を生じさせ、その結果生じるj×B力が双極性速度からのずれに抵抗し、遮蔽を強化する。

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StellaratorMagnetic perturbationResonant magnetic perturbationPlasma flow
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