托卡马克
等离子体
不稳定性
饱和(图论)
振幅
DIII-D公司
物理
机械
计算物理学
核物理学
光学
数学
组合数学
作者
G. Brochard,Chang Liu,Xishuo Wei,W. W. Heidbrink,Zhifang Lin,Н. Н. Гореленков,C. Chrystal,Xiaodi Du,Jian Bao,A.R. Polevoi,Matthias Schneider,S. H. Kim,S. D. Pinches,Pengfei Liu,J. H. Nicolau,H. Lütjens
标识
DOI:10.1103/physrevlett.132.075101
摘要
Gyrokinetic simulations of the fishbone instability in DIII-D tokamak plasmas find that self-generated zonal flows can dominate the nonlinear saturation by preventing coherent structures from persisting or drifting in the energetic particle phase space when the mode frequency down-chirps. Results from the simulation with zonal flows agree quantitatively, for the first time, with experimental measurements of the fishbone saturation amplitude and energetic particle transport. Moreover, the fishbone-induced zonal flows are likely responsible for the formation of an internal transport barrier that was observed after fishbone bursts in this DIII-D experiment. Finally, gyrokinetic simulations of a related ITER baseline scenario show that the fishbone induces insignificant energetic particle redistribution and may enable high performance scenarios in ITER burning plasma experiments.
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