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Verification of global gyrokinetic simulation of low frequency mode excited by thermal plasma in spherical tokamak

Title: Verification of global gyrokinetic simulation of low frequency mode excited by thermal plasma in spherical tokamak
Authors: Handi Huang; Nikolai Gorelenkov; Xishuo Wei; Zhihong Lin; V.N. Duarte; Stanley Kaye; Michele Romanelli
Source: Nuclear Fusion, Vol 66, Iss 3, p 036050 (2026)
Publisher Information: IOP Publishing
Publication Year: 2026
Collection: Directory of Open Access Journals: DOAJ Articles
Subject Terms: magnetic confinement fusion; spherical tokamak; Alfvén eigenmode; gyrokinetic simulation; low frequency mode; Nuclear and particle physics. Atomic energy. Radioactivity; QC770-798
Description: A low frequency Alfven eigenmode in the ST40 spherical tokamak (ST) is found to be resonantly excited by thermal ions from global gyrokinetic GTC simulations. The analyses of phase-space resonances and wave-particle energy exchanges show that the Beta-induced Alfvén-Acoustic Eigenmode (BAAE) is primarily driven unstable by thermal ions, but is stabilized by energetic particles (EPs). When all kinetic effects are artificially suppressed, GTC simulations in the ideal magnetohydrodynamic (MHD) limit confirm the existence of the MHD eigenmode with a frequency in the BAAEs gap, as previously found by the ideal MHD code NOVA. The kinetic effects of thermal ions induce a frequency downshift compared to the stable BAAE in the MHD simulations. These results support the verification for global gyrokinetic simulations of the BAAE in the ST. However, the simulations do not explain the experimental observations of the BAAE in the ST40, possibly owing to the limitation of the collisionless gyrokinetic Monte Carlo model for the EPs.
Document Type: article in journal/newspaper
Language: English
Relation: https://doi.org/10.1088/1741-4326/ae463f; https://doaj.org/toc/0029-5515; https://doaj.org/article/3867e9d756a14ea9aa9891b22208060d
DOI: 10.1088/1741-4326/ae463f
Availability: https://doi.org/10.1088/1741-4326/ae463f; https://doaj.org/article/3867e9d756a14ea9aa9891b22208060d
Accession Number: edsbas.890776EE
Database: BASE