FusionPapers
図版検索AI要約wiki日本の研究装置ジャーナルChatGPTAbout
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Electron internal transport barriers, rationals and quasi-coherent oscillations in the stellarator TJ-II

T Estrada, A Alonso, A A Chmyga, N Dreval, L Eliseev, C Hidalgo, A D Komarov, A S Kozachok, L Krupnik, A V Melnikov2005年Plasma Physics and Controlled FusionIF 2.2出版社

The evolution of core quasi-coherent modes has been investigated during the formation of electron internal transport barriers (e-ITB) in the TJ-II stellarator. These modes have been characterized using heavy ion beam probe and electron cyclotron emission diagnostics. The quasi-coherent mode evolves during formation/annihilation of the e-ITB and vanishes as the transport barrier is fully developed. These observations can be interpreted in terms of the influence of sheared flows in the stability of quasi-coherent modes.

装置

tj-ii高精度(タイトル一致)

wiki

StellaratorTransport barrierInternal transport barrierTJ-II
この論文にはまだAI要約がありません。

関連論文

Electron internal transport barrier formation and dynamics in the plasma core of the TJ-II stellarator

2004Plasma Physics and Controlled Fusion

Study of the origin of quasi-coherent modes in low-density KSTAR ECH plasmas

2021Nuclear Fusion

Summary of experimental core turbulence characteristics in ohmic and electron cyclotron resonance heated discharges in T-10 tokamak plasmas

2005Nuclear Fusion

Dynamics of electron internal transport barrier formation at the H–L transition on EAST

2022Nuclear Fusion

Quasi-coherent modes and electron-driven turbulence

2014Nuclear Fusion

Observation and characterisation of trapped electron modes in Wendelstein 7-X

2025Plasma Physics and Controlled Fusion

Interpretation of negative central shear electron internal transport barriers

2006Plasma Physics and Controlled Fusion

Plasma potential and turbulence dynamics in toroidal devices (survey of T-10 and TJ-II experiments)

2011Nuclear Fusion

Influence of magnetic topology on transport and stability in stellarators

2005Plasma Physics and Controlled Fusion

Low frequency m = 1 modes during standard and improved confinement scenarios in W7-X

2025Nuclear Fusion