Gorelenkov N N
Princeton Plasma Physics Laboratory, Princeton, New Jersey 08543-0451, USA.
Phys Rev Lett. 2005 Dec 31;95(26):265003. doi: 10.1103/PhysRevLett.95.265003. Epub 2005 Dec 27.
A new type of global shear Alfvén eigenmode is found in tokamak plasmas where the mode localization is in the region intersecting the Alfvén continuum. The eigenmode is formed by the coupling of two solutions from two adjacent gaps (akin to potential wells) in the shear Alfvén continuum. For tokamak plasmas with reversed magnetic shear, it is shown that the toroidicity-induced solution tunnels through the continuum to match the ellipticity-induced Alfvén eigenmode so that the resulting solution is continuous at the point of resonance with the continuum. The existence of these double-gap Alfvén eigenmodes allows for potentially new ways of coupling edge fields to the plasma core in conditions where the core region is conventionally considered inaccessible. Implications include new approaches to heating and current drive in fusion plasmas as well as its possible use as a core diagnostic in burning plasmas.
在托卡马克等离子体中发现了一种新型的全局剪切阿尔文本征模,其模局域在与阿尔文连续区相交的区域。该本征模由剪切阿尔文连续区中两个相邻间隙(类似于势阱)的两个解耦合形成。对于具有反向磁剪切的托卡马克等离子体,研究表明,由环向性诱导的解隧穿连续区以匹配由椭圆率诱导的阿尔文本征模,从而使所得解在与连续区共振的点处连续。这些双间隙阿尔文本征模的存在为在通常认为核心区域不可达的条件下将边缘场耦合到等离子体核心提供了潜在的新途径。其意义包括在聚变等离子体中加热和电流驱动的新方法,以及其在燃烧等离子体中作为核心诊断的可能用途。