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DIII-D 托卡马克中边缘局域模抑制阈值处的基座分岔和共振场穿透。

Pedestal bifurcation and resonant field penetration at the threshold of edge-localized mode suppression in the DIII-D Tokamak.

机构信息

Princeton Plasma Physics Laboratory, PO Box 451, Princeton, New Jersey 08543-0451, USA.

General Atomics, PO Box 85608, San Diego, California 92186-5608, USA.

出版信息

Phys Rev Lett. 2015 Mar 13;114(10):105002. doi: 10.1103/PhysRevLett.114.105002. Epub 2015 Mar 12.

Abstract

Rapid bifurcations in the plasma response to slowly varying n=2 magnetic fields are observed as the plasma transitions into and out of edge-localized mode (ELM) suppression. The rapid transition to ELM suppression is characterized by an increase in the toroidal rotation and a reduction in the electron pressure gradient at the top of the pedestal that reduces the perpendicular electron flow there to near zero. These events occur simultaneously with an increase in the inner-wall magnetic response. These observations are consistent with strong resonant field penetration of n=2 fields at the onset of ELM suppression, based on extended MHD simulations using measured plasma profiles. Spontaneous transitions into (and out of) ELM suppression with a static applied n=2 field indicate competing mechanisms of screening and penetration of resonant fields near threshold conditions. Magnetic measurements reveal evidence for the unlocking and rotation of tearinglike structures as the plasma transitions out of ELM suppression.

摘要

在等离子体从边缘局域模(ELM)抑制状态过渡到非抑制状态时,观察到等离子体对缓慢变化的 n=2 磁场的响应会迅速分叉。快速过渡到 ELM 抑制的特征是环形旋转增加,以及顶部分叉点处的电子压力梯度降低,导致垂直电子流几乎降至零。这些事件与内管壁磁响应的增加同时发生。这些观察结果与基于使用测量等离子体轮廓的扩展 MHD 模拟的 ELM 抑制起始时 n=2 场的强共振场穿透一致。在施加的 n=2 场存在的情况下,自发进入(和退出)ELM 抑制的转变表明,在接近阈值条件下,存在共振场屏蔽和穿透的竞争机制。磁场测量结果显示,等离子体从 ELM 抑制状态过渡时,撕裂状结构的解锁和旋转有证据表明。

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