物理
膨胀
等离子体
动能
自举电流
环面
原子物理学
融合
半径
焊剂(冶金)
BETA(编程语言)
湍流
计算物理学
托卡马克
核物理学
机械
经典力学
材料科学
计算机安全
计算机科学
冶金
哲学
语言学
程序设计语言
作者
Xiang Jian,J. Chen,S. Ding,A. M. Garofalo,Xiaojing Gong,C. Holland,J. Huang,V. S. Chan,X. Qin,Guanying Yu,R. R.,Xiaodi Du,R. Hong,G. M. Staebler,Huiqian Wang,Z. Yan,E.M. Bass,D. L. Brower,Weixing Ding,D.M. Orlov
标识
DOI:10.1103/physrevlett.131.145101
摘要
We report the observation of a set of coherent high frequency electromagnetic fluctuations that leads to a turbulence induced self-regulating phenomenon in the DIII-D high bootstrap current fraction plasma. The fluctuations have frequency of 130-220 kHz, the poloidal wavelength and phase velocity are 16-30 m^{-1} and ∼30 km/s, respectively, in the outboard midplane with the estimated toroidal mode number n∼5-9. The fluctuations are located in the internal transport barrier (ITB) region at large radius and are experimentally validated to be kinetic ballooning modes (KBM). Quasilinear estimation predicts the KBM to be able to drive experimental particle flux and non-negligible thermal flux, suggesting its significant role in regulating the ITB saturation.
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