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Quasi-coherent fluctuation measurement with the upgraded microwave imaging reflectometer in KSTAR

W Lee, J Leem, D J Lee, M J Choi, H K Park, J A Lee, G S Yun, T G Kim, H Park, K W Kim2018年Plasma Physics and Controlled FusionIF 2.2出版社

The microwave imaging reflectometer (MIR) is the leading diagnostic tool for study of density fluctuations in KSTAR. For last three years since 2014, major components such as the multi-frequency probe beam source, multi-channel detector array, signal processing electronic system, data acquisition system, and optical system have been gradually upgraded. In this paper, the detailed system upgrade with test results in the laboratory and/or plasma is given, and analysis results of a distinctive fluctuation structure referred to as the quasi-coherent mode (QCM) measured by the upgraded MIR system for an L-mode discharge are presented. Cross-coherence analysis with multiple channels shows that the QCM is localized in a core region and appears to be driven by electron temperature gradient for the discharge.

日本語訳

マイクロ波イメージング反射計(MIR)は、KSTARにおける密度揺動の研究のための主要な診断ツールである。2014年以降の過去3年間にわたり、多周波プローブビーム源、多チャンネル検出器アレイ、信号処理電子回路システム、データ収集システム、光学システムなどの主要コンポーネントが段階的にアップグレードされてきた。本論文では、実験室および/またはプラズマにおける試験結果を用いた詳細なシステムアップグレードを示し、アップグレードされたMIRシステムを用いてLモード放電で測定された準コヒーレントモード(QCM)と呼ばれる特徴的な揺動構造の解析結果を提示する。多チャンネルクロスコヒーレンス解析により、QCMはコア領域に局在し、その放電において電子温度勾配によって駆動されることが示される。

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