JOURNAL ARTICLE

Trapped Electron Mode Turbulence Driven Intrinsic Rotation in Tokamak Plasmas

Weixing WangT. S. HahmS. EthierL. ZakharovP. H. Diamond

Year: 2011 Journal:   Physical Review Letters Vol: 106 (8)Pages: 085001-085001   Publisher: American Physical Society

Abstract

Progress from global gyrokinetic simulations in understanding the origin of intrinsic rotation in toroidal plasmas is reported. The turbulence-driven intrinsic torque associated with nonlinear residual stress generation due to zonal flow shear induced asymmetry in the parallel wave number spectrum is shown to scale close to linearly with plasma gradients and the inverse of the plasma current, qualitatively reproducing experimental empirical scalings of intrinsic rotation. The origin of current scaling is found to be enhanced k(∥) symmetry breaking induced by the increased radial variation of the safety factor as the current decreases. The intrinsic torque is proportional to the pressure gradient because both turbulence intensity and zonal flow shear, which are two key ingredients for driving residual stress, increase with turbulence drive, which is R/L(T(e)) and R/L(n(e)) for the trapped electron mode.

Keywords:
Tokamak Turbulence Physics Plasma Electron Rotation (mathematics) Atomic physics Mode (computer interface) Gyrokinetics Plasma instability Nuclear physics Mechanics

Metrics

36
Cited By
2.46
FWCI (Field Weighted Citation Impact)
13
Refs
0.96
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Magnetic confinement fusion research
Physical Sciences →  Physics and Astronomy →  Nuclear and High Energy Physics
Ionosphere and magnetosphere dynamics
Physical Sciences →  Physics and Astronomy →  Astronomy and Astrophysics
Solar and Space Plasma Dynamics
Physical Sciences →  Physics and Astronomy →  Astronomy and Astrophysics

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