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Measurement of neutral density profile in a tokamak plasma using the principle of laser induced ionization

V.I. Gladushchak, V.K. Gusev, M.Yu. Kantor, Yu.V. Petrov, G.T. Razdobarin, V.V. Semenov, S.Yu. Tolstyakov1995年被引用 8Nuclear FusionIF 3出版社

An application is discussed of a new method based on laser induced ionization that is an alternative to the laser induced fluorescence diagnostics. Here ionization of the hydrogen upper atomic states gives the local hydrogen densities in a plasma. On the basis of a rate equation analysis for a diffusion dominated plasma a probe saturation flux density of a few MW/cm2 was introduced and appropriate values were used for the plasma diagnostics. A multipulse neodymium laser was designed for plasma probing on the FT-I tokamak to measure the neutral density profiles along the plasma diameter. Local neutral densities as low as 1*108 cm-3, which is close to the sensitivity limit of the employed device, have been detected in a single tokamak discharge. The experimental results obtained on the FT-1 tokamak are presented and discussed

日本語訳

レーザー誘起蛍光診断の代替となる、レーザー誘起イオン化に基づく新しい方法の応用について論じる。ここでは、水素の上部原子状態のイオン化により、プラズマ中の局所水素密度が得られる。拡散支配プラズマに対するレート方程式解析に基づき、プローブ飽和フラックス密度として数MW/cm2が導入され、プラズマ診断に適切な値が用いられた。FT-Iトカマクでのプラズマプロービングのために、プラズマ直径に沿った中性密度分布を測定するマルチパルス・ネオジムレーザーが設計された。使用した装置の感度限界に近い1*108 cm-3という低い局所中性密度が、単一のトカマク放電で検出された。FT-1トカマクで得られた実験結果を示し、考察する。

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