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Experimental Study on Slowing-Down Mechanism of Locked-Mode-Like Instability in LHD

Authors :
TAKEMURA, Yuki
WATANABE, Kiyomasa
TOKUZAWA, Tokihiko
SAKAKIBARA, Satoru
NARUSHIMA, Yoshiro
OKAMOTO, Masaaki
OHDACHI, Satoshi
SUZUKI, Yasuhiro
IDA, Katsumi
YOSHINUMA, Mikiro
TSUCHIYA, Hayato
YAMADA, Ichihiro
LHD Experiment Group
TAKEMURA, Yuki
WATANABE, Kiyomasa
TOKUZAWA, Tokihiko
SAKAKIBARA, Satoru
NARUSHIMA, Yoshiro
OKAMOTO, Masaaki
OHDACHI, Satoshi
SUZUKI, Yasuhiro
IDA, Katsumi
YOSHINUMA, Mikiro
TSUCHIYA, Hayato
YAMADA, Ichihiro
LHD Experiment Group
Publication Year :
2022

Abstract

In order to clarify the mechanism responsible for slowing down the precursor of an instability in Large Helical Device (LHD), whose behavior is similar to the locked mode instability in tokamaks, the spatial structure of the precursor of the locked-mode-like instability, and the relationship between the rotation of the precursor and the E × B rotation were experimentally investigated. The precursor rotates together with the E × B rotation at the resonant surface, and the precursor rotation slows down because of a decrease of the E × B rotation. The multi-channel fluctuation measurement of the precursor suggests that the precursor has a magnetic island, which may be related to the decrease of the E × B rotation. In addition, the reason for the appearance of the precursor with a magnetic island is discussed. The precursor appears when a magnetic island grows initially without rotation but then shrinks and begins to rotate.<br />source:https://doi.org/10.1585/pfr.12.1402028<br />identifier:0000-0003-3754-897X

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1375183121
Document Type :
Electronic Resource