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Analysis of the ECH effect on EPM/AE stability in Heliotron J plasma using a Landau closure model

Authors :
J. Varela
K. Nagasaki
S. Kobayashi
K. Nagaoka
P. Adulsiriswad
A. Cappa
S. Yamamoto
K.Y. Watanabe
D.A. Spong
L. Garcia
Y. Ghai
J. Ortiz
Source :
Nuclear Fusion, Vol 63, Iss 2, p 026009 (2022)
Publication Year :
2022
Publisher :
IOP Publishing, 2022.

Abstract

The aim of the present study is to analyze the effect of the electron cyclotron heating (ECH) on the linear stability of Alfvén eigenmodes (AEs) and energetic particle modes (EPMs) triggered by energetic ions in Heliotron J plasma. The analysis is performed using the FAR3d code that solves a reduced MHD model to describe the thermal plasma coupled with a gyrofluid model for the energetic particle (EP) species. The simulations reproduce the AE/EPM stability trends observed in the experiments as the electron temperature ( T _e ) increases, modifying the thermal plasma β , EP β and EP slowing-down time. Particularly, the $n/m = 1/2$ EPM and $2/4$ Global AE are stabilized in the low-bumpiness (LB) configuration due to an enhancement of the continuum, finite Larmor radius and e-i Landau damping effects as the thermal β increases. On the other hand, a larger ECH injection power cannot stabilize the AE/EPM in medium-bumpiness and high-bumpiness (HB) configurations because the damping effects are weaker compared to the LB case, unable to balance the further destabilization induced by an enhanced EP resonance as the EP slowing-down time and EP β increases with T _e .

Details

Language :
English
ISSN :
17414326 and 00295515
Volume :
63
Issue :
2
Database :
Directory of Open Access Journals
Journal :
Nuclear Fusion
Publication Type :
Academic Journal
Accession number :
edsdoj.08aa664d69084961a1e03503d0eb37ba
Document Type :
article
Full Text :
https://doi.org/10.1088/1741-4326/aca98e