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Linear gyrokinetic simulations of reversed shear Alfvén eigenmodes and ion temperature gradient modes in DIII-D tokamak

Authors :
Hongyu Wang
Wenlu Zhang
Zhihong Lin
Pengfei Liu
Source :
Plasma Science and Technology. 23:015101
Publication Year :
2020
Publisher :
IOP Publishing, 2020.

Abstract

Global linear gyrokinetic simulations using realistic DIII-D tokamak geometry and plasma profiles find co-existence of unstable reversed shear Alfvén eigenmodes (RSAE) with low toroidal mode number n and electromagnetic ion temperature gradient (ITG) instabilities with higher toroidal mode number n. For intermediate n = [10, 12], RSAE and ITG co-exist and overlap weakly in the radial domain with similar growth rates but different real frequencies. Both RSAE and ITG growth rates decrease less than 5% when compressible magnetic perturbations are neglected in the simulations. The ITG growth rates increase less than 7% when fast ions are not included in the simulations. Finally, the effects of trapped electrons on the RSAE are negligible.

Details

ISSN :
10090630
Volume :
23
Database :
OpenAIRE
Journal :
Plasma Science and Technology
Accession number :
edsair.doi...........588a3ebba27c0419ade07fa23aa1af3c