FusionPapers
図版検索トレンドwiki日本の研究
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Observation of Zeeman splitting of spectral lines from the JET plasma

P G Carolan, M J Forrest, N J Peacock, D L Trotman1985年Plasma Physics and Controlled FusionIF 2.2出版社

Zeeman splitting of spectral lines from hydrogen and impurities in the JET Tokamak plasma has been observed in the visible region of the spectrum. An Optical Multichannel Analyser (OMA) coupled to a 1 m Czerny-Turner instrument is used to record several spectral lines simultaneously many times during a discharge. Tangential viewing optics enhance the influence of Zeeman splitting, especially when the impurities are located where the magnetic field is aligned along the viewing chord. To date, splitting of Halpha (6563 AA), CII (6578 AA and 6583 AA), CrI (4289 AA, 4274 AA and 4254 AA) and CIII (4794 AA, 4810 AA and 4819 AA) has been detected. The location of the impurities is determined from the magnitude of the splitting and the known toroidal field distribution. The effects of the magnetic field on the line profiles are best observed during the plasma initiation and termination phases where, for example, a large plasma incursion can result in the injection of impurities from the inner wall. The technique is of particular importance in determining the source of impurities (e.g. from the inside wall or the limiter at the outer periphery). The observations also highlight the importance of taking Zeeman splitting into account when making Doppler shift or broadening measurements in the visible spectrum.

日本語訳

JETトカマクプラズマ中の水素および不純物からのスペクトル線のゼーマン分裂が、可視領域で観測された。1mのツェルニー・ターナー分光器に結合された光学多チャンネル分析器(OMA)を用いて、放電中に複数のスペクトル線を同時に多数回記録する。接線方向の観測光学系は、特に不純物が磁場が視線に沿って整列している場所にある場合に、ゼーマン分裂の影響を増強する。これまでに、Hα(6563 AA)、CII(6578 AAおよび6583 AA)、CrI(4289 AA、4274 AAおよび4254 AA)、CIII(4794 AA、4810 AAおよび4819 AA)の分裂が検出されている。不純物の位置は、分裂の大きさと既知のトロイダル磁場分布から決定される。磁場が線プロファイルに及ぼす影響は、プラズマの開始および終了段階で最もよく観測される。例えば、大きなプラズマの進入が内壁からの不純物の注入をもたらす可能性がある。この技術は、不純物の起源(例えば、内壁または外側周辺のリミッターから)を決定する上で特に重要である。また、これらの観測は、可視スペクトルにおけるドップラーシフトまたは広がりの測定を行う際に、ゼーマン分裂を考慮することの重要性を強調している。

装置

jet高精度(タイトル一致)

wiki

JET
この論文にはまだAI要約がありません。

関連論文

Impurity temperatures measured via line shape analysis in the island scrape-off-layer of Wendelstein 7-X

2022Plasma Physics and Controlled Fusion

Localizing C III emission using multi-delay coherence imaging spectroscopy on W7-X

2026Plasma Physics and Controlled Fusion

Near-infrared Zeeman spectroscopy for the spatially resolved measurement of helium emission spectra in Heliotron J

2019Plasma Physics and Controlled Fusion

A potential optical approach for diagnosis of the local magnetic field near the surface of the first wall/divertor tiles by Zeeman effect using polarization-resolved laser-induced breakdown spectroscopy

2024Nuclear Fusion

Note: Zeeman splitting measurements in a high-temperature plasma

2010Review of Scientific Instruments

Zeeman splitting measurements of magnetic fields in iodine plasma

2018Review of Scientific Instruments

Doppler line shape model for the W I 5d56s—5d56p transition at 400.9 nm in tokamaks

2019Plasma Physics and Controlled Fusion

Investigation of oxygen impurity transport using the O4+ visible spectral line in the Aditya tokamak

2013Nuclear Fusion

Parametrization of the Zeeman effect for hydrogen-like spectra in high-temperature plasmas

2002Plasma Physics and Controlled Fusion

Physics studies of ADITYA & ADITYA-U tokamak plasmas using spectroscopic diagnostics

2022Nuclear Fusion