轴向对称偏滤器实验
等离子体
离子
原子物理学
等离子体约束
融合
物理
托卡马克
磁聚变
芯(光纤)
材料科学
核物理学
核工程
聚变能
光学
哲学
工程类
量子力学
语言学
作者
A. Di Siena,R. Bilato,T. Görler,A. Bañón Navarro,E. Poli,V. Bobkov,D. Jarema,E. Fable,C. Angioni,Ye. O. Kazakov,R. Ochoukov,P. A. Schneider,M. Weiland,F. Jenko,the ASDEX Upgrade Team
标识
DOI:10.1103/physrevlett.127.025002
摘要
The key result of the present work is the theoretical prediction and observation of the formation of a new type of transport barrier in fusion plasmas, called F-ATB (fast ion-induced anomalous transport barrier). As demonstrated through state-of-the-art global electrostatic and electromagnetic simulations, the F-ATB is characterized by a full suppression of the turbulent transport-caused by strongly sheared, axisymmetric E×B flows-and an increase of the neoclassical counterpart, albeit keeping the overall fluxes at significantly reduced levels. The trigger mechanism is shown to be a mainly electrostatic resonant interaction between suprathermal particles, generated via ion-cyclotron-resonance heating, and plasma microturbulence. These findings are obtained by realistic simulations of the ASDEX Upgrade discharge No. 36637-properly designed to maximized the beneficial role of the wave-particle resonance interaction-which exhibits the expected properties of improved confinement produced by energetic particles.
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