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Laboratory characterization of an imaging reflectometer system

T Munsat, E Mazzucato, H Park, C W Domier, N C Luhmann Jr, A J H Donné, M van de Pol2003年Plasma Physics and Controlled FusionIF 2.2出版社

While microwave reflectometry has proven to be a sensitive tool for measuring electron density fluctuations in many circumstances, it has also been shown to have limited viability for core measurements and/or conditions of strong turbulence. To this end, a new instrument based on two-dimensional imaging reflectometry has been developed to measure density fluctuations over an extended plasma region in the TEXTOR tokamak. Laboratory characterization of this instrument has been performed using corrugated reflecting targets as an approximation to plasma reflections including two-dimensional turbulent fluctuations of various magnitude and poloidal wavenumber. Within this approximation, the imaging reflectometer can recover the spectral and spatial characteristics of the reflection layer lost to or otherwise inaccessible to conventional techniques.

日本語訳

マイクロ波反射測定法は、多くの状況において電子密度揺動を測定するための高感度なツールであることが実証されているが、コアプラズマ測定や強い乱流条件下での適用性には限界があることも示されている。この目的のために、TEXTORトカマクにおいて拡張されたプラズマ領域の密度揺動を測定する二次元反射測定法に基づく新しい装置が開発された。この装置の実験室特性評価は、種々の振幅およびポロイダル波数を有する二次元乱流揺動を含むプラズマ反射の近似として、波状反射体を用いて実施された。この近似の範囲内で、二次元反射測定装置は、従来の手法では失われるか、またはアクセス不能となる反射層の空間的およびスペクトル的特性を回復できることが実証された。

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