POSTECH, Pohang, Republic of Korea.
Phys Rev Lett. 2011 Jul 22;107(4):045004. doi: 10.1103/PhysRevLett.107.045004.
The filamentary nature and dynamics of edge-localized modes (ELMs) in the KSTAR high-confinement mode plasmas have been visualized in 2D via electron cyclotron emission imaging. The ELM filaments rotating with a net poloidal velocity are observed to evolve in three distinctive stages: initial linear growth, interim quasisteady state, and final crash. The crash is initiated by a narrow fingerlike perturbation growing radially from a poloidally elongated filament. The filament bursts through this finger, leading to fast and collective heat convection from the edge region into the scrape-off layer, i.e., ELM crash.
通过电子回旋辐射成像,在 KSTAR 高约束模式等离子体中可视化了边缘局域模(ELM)的丝状结构和动力学。观察到带有净极向速度的 ELM 丝旋转,并经历了三个不同的阶段:初始线性增长、中间准稳态和最终崩溃。崩溃是由一个从极向拉长的丝径向生长的窄指状扰动引发的。丝体穿过这个指状结构,导致快速和集体的热对流从边缘区域进入刮削层,即 ELM 崩溃。