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Ray tracing analysis of stray light for charge exchange recombination spectroscopy on ITER

Shin Kajita, Maarten De Bock, Manfred von Hellermann, Andrei Kukushkin, Robin Barnsley2015年Plasma Physics and Controlled FusionIF 2.2出版社

Charge exchange recombination spectroscopy (CXRS) provides basic measurements in ITER such as the ion temperature, plasma rotation, and the impurity and helium content. One of the issues concerning all spectroscopic measurements in ITER is the influence of the reflection of light in a vacuum vessel, since ITER will have a full metallic wall, which has higher optical reflectance than a carbon wall. The noise level can be enhanced and the signal can be disturbed by the reflection. In this study, the influences of the light reflection on the CXRS measurement have been investigated using a ray tracing simulation. Influences of the reflection of the active CXRS signal, the light emission from the divertor and scrape off layer, and bremsstrahlung are quantitatively shown in typical discharge scenario cases.

日本語訳

荷電交換再結合分光法(CXRS)は、ITERにおいてイオン温度、プラズマ回転、不純物およびヘリウム含有量などの基本的な計測を提供する。ITERにおけるすべての分光計測に関わる課題の一つは、真空容器内での光の反射の影響である。なぜなら、ITERは炭素壁よりも高い光学反射率を有する全金属壁を採用するためである。反射によりノイズレベルが増大し、信号が乱される可能性がある。本研究では、光線追跡シミュレーションを用いて、CXRS計測に対する光反射の影響を調査した。典型的な放電シナリオのケースにおいて、活性CXRS信号の反射、ダイバータおよびスクレイプオフ層からの発光、および制動放射の影響を定量的に示した。

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