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Spontaneous core toroidal rotation in Alcator C-Mod L-mode, H-mode and ITB plasmas

J E Rice, A C Ince-Cushman, M L Reinke, Y Podpaly, M J Greenwald, B LaBombard, E S Marmar2008年Plasma Physics and Controlled FusionIF 2.2出版社

Spontaneous toroidal rotation, self-generated in the absence of an external momentum input, exhibits a rich phenomenology. In L-mode plasmas, the rotation varies in a complicated fashion with electron density, magnetic configuration and plasma current and is predominantly in the counter-current direction. The rotation depends sensitively on the balance between the upper and lower null and plays a crucial role in the H-mode power threshold. Rotation inversion between the counter- and co-current directions has been observed following small changes in the electron density and plasma current, with very distinct thresholds. In contrast, the intrinsic rotation in H-mode plasmas has a relatively simple parameter dependence, with the rotation velocity proportional to the plasma stored energy normalized to the plasma current, and is nearly always directed co-current. In plasmas with internal transport barriers, formed either with off-axis ICRF heating or LHCD, the core rotation velocity increments in the counter-current direction as the barrier evolves.

日本語訳

外部運動量入力なしに自己生成される自発的トロイダル回転は、多様な現象を示す。Lモードプラズマでは、回転は電子密度、磁気配位、プラズマ電流に応じて複雑に変化し、主として電流方向と逆方向である。回転は、上部と下部のヌル点のバランスに敏感に依存し、Hモードパワー閾値において重要な役割を果たす。電子密度とプラズマ電流のわずかな変化に伴い、回転は電流方向と逆方向の間で反転することが観察されており、明確な閾値が存在する。対照的に、Hモードプラズマにおける自発的回転は比較的単純なパラメータ依存性を示し、回転速度はプラズマ電流で規格化されたプラズマ蓄積エネルギーに比例し、ほぼ常に電流方向である。内部輸送障壁を有するプラズマでは、オフアクシスICRH加熱またはLHCDによって障壁が形成されるが、障壁の進展に伴いコア回転速度は電流方向に増加する。

装置

alcator-c-mod高精度(タイトル一致)

wiki

H-modeAlcatorC-ModInternal transport barrierL-modeToroidal rotation
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