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Measurement of plasma boundary displacement by n = 2 magnetic perturbations using imaging beam emission spectroscopy

R.A. Moyer, M.A. Van Zeeland, D.M. Orlov, A. Wingen, T.E. Evans, N.M. Ferraro, J.M. Hanson, R. Nazikian, M.R. Wade, L. Zeng2012年被引用 47Nuclear FusionIF 3出版社

Imaging beam emission spectroscopy has been used to study the displacement of the plasma boundary in ELMing H-mode discharges with a 10 Hz rotating n = 2 external magnetic field perturbation in DIII-D. The rotating magnetic field creates a helical displacement of the beam emission profile of ∼2 cm on the low-field-side (LFS) midplane which rotates with the applied resonant magnetic perturbation. This shift in the beam emission profile is due primarily to a shift in the electron density profile, which is independently measured to be 1.9 cm on the LFS midplane. These boundary displacements exceed calculations for the displacement of the stable and unstable manifolds formed by the interaction of the magnetic perturbation with the divertor separatrix by a factor of 4–5, suggesting that the vacuum field model does not correctly model the effect of the magnetic perturbations even near the separatrix. The measured displacements are suggestive of a non-resonant kink response.

日本語訳

イメージングビーム発光分光法を用いて、DIII-Dにおける10 Hzで回転するn = 2外部磁場摂動を伴うELMing Hモード放電におけるプラズマ境界の変位を調べた。回転磁場は、印加された共鳴磁気摂動とともに回転する低磁場側(LFS)中間面におけるビーム発光プロファイルの約2 cmの螺旋状変位を生じさせる。このビーム発光プロファイルのずれは、主に電子密度プロファイルのずれによるものであり、LFS中間面で1.9 cmと独立に測定された。これらの境界変位は、磁気摂動とダイバータセパラトリクスとの相互作用によって形成される安定多様体および不安定多様体の変位に対する計算値を4〜5倍上回っており、真空磁場モデルがセパラトリクス近傍でさえ磁気摂動の効果を正しくモデル化していないことを示唆している。測定された変位は、非共鳴キンク応答を示唆するものである。

装置

diii-d中精度(概要文一致)

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Magnetic perturbationEmission spectroscopyBeam emission spectroscopy
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