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Investigation of lower hybrid wave coupling and the related effects of ion cyclotron range of frequencies in EAST

E H Kong, T Zhang, B J Ding, L Liu, C M Qin, X Z Gong, Z G Wu, J F Shan, F K Liu, M H Li2012年Plasma Physics and Controlled FusionIF 2.2出版社

Effective coupling for lower hybrid waves (LHWs) is achieved by adjusting the launcher position and optimizing the plasma configuration in L-mode in EAST. It is found that, compared with other divertor shapes, the plasma with double null shows better coupling performance at the same position of lower hybrid (LH) grill, especially in the case of a large safety factor near the separatrix (q95) and a large edge recycling (Dα) intensity. The ion cyclotron range of frequency (ICRF) power has a significant impact on LH wave coupling when the ICRF antenna is magnetically connected to the LH grill. The asymmetry effects in the poloidal direction on reflection coefficients are obtained with a low edge density during ICRF power application. The origin of such a relevant asymmetry with ICRF is different from LHWs. Results not only suggest that ICRF power could modify the density in the local scrape-off layer (SOL), but also indicate that density convection in the SOL could be easily obtained with a low edge density. One promising alternative for eliminating the negative impact on LHW coupling induced by ICRF is gas (D2) injection both from the electronic side and ionic side in EAST.

日本語訳

EASTにおける低混成波(LHW)の効率的な結合は、ランチャー位置の調整とLモードにおけるプラズマ配位の最適化によって達成される。他のダイバータ形状と比較して、ダブルヌル配位のプラズマは、低混成波(LH)グリルと同じ位置において優れた結合性能を示すことが見出された。特に、セパラトリクス近傍の安全係数(q95)が大きく、周辺リサイクリング(Dα)強度が大きい場合に顕著である。イオンサイクロトロン周波数帯(ICRF)パワーは、ICRFアンテナがLHグリルと磁気的に結合している場合、LHW結合に有意な影響を及ぼす。ICRFパワー印加中、低周辺密度条件下でポロイダル方向の反射係数の非対称性が得られた。このICRFに伴う顕著な非対称性の起源は、LHWの場合とは異なる。結果は、ICRFパワーが局所スクレイプオフ層(SOL)の密度を変調し得ることを示唆するだけでなく、低周辺密度条件下でSOLにおける密度対流が容易に生じ得ることをも示している。ICRFによって誘起されるLHW結合への負の影響を排除するための有望な方法の一つとして、EASTにおける電子側およびイオン側の両方からのガス(D₂)入射がある。

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east高精度(タイトル一致)

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EASTIon cyclotron heatingLower hybrid
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