Schmid B, Manz P, Ramisch M, Stroth U
IGVP, Universität Stuttgart, 70569 Stuttgart, Germany.
Max-Planck-Institut für Plasmaphysik, 85748 Garching, Germany.
Phys Rev Lett. 2017 Feb 3;118(5):055001. doi: 10.1103/PhysRevLett.118.055001. Epub 2017 Jan 31.
The collisionality scaling of density and potential coupling together with zonal flow energy transfer and spectral power is investigated at the stellarator experiment TJ-K. With a poloidal probe array, consisting of 128 Langmuir probes, density and potential fluctuations are measured on four neighboring flux surfaces simultaneously over the complete poloidal circumference. By analyzing Reynolds stress and pseudo-Reynolds stress, it is found that, for increasing collisionality, the coupling between density and potential decreases which hinders the zonal flow drive. Also, as a consequence, the nonlinear energy transfer, as well as the zonal flow contribution to the complete turbulent spectrum, decreases the same way. This is in line with theoretical expectations and is a first experimental verification of the importance of collisionality for large-scale structure formation in magnetically confined toroidal plasmas.
在仿星器实验TJ-K中,研究了密度和势耦合的碰撞性标度以及带状流能量转移和谱功率。使用由128个朗缪尔探针组成的极向探针阵列,在整个极向圆周上同时在四个相邻的通量面上测量密度和势涨落。通过分析雷诺应力和伪雷诺应力发现,随着碰撞性增加,密度和势之间的耦合减小,这阻碍了带状流驱动。同样,结果是非线性能量转移以及带状流对整个湍流谱的贡献也以相同方式减小。这与理论预期一致,并且是对碰撞性在磁约束环形等离子体中大规模结构形成的重要性的首次实验验证。