FusionPapers
図版検索トレンドwiki日本の研究
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Electron Bernstein wave current drive in the start-up phase of a Tokamak discharge

A Montes, G O Ludwig1986年Plasma Physics and Controlled FusionIF 2.2出版社

Current drive by electron Bernstein waves in the start-up phase of Tokamak discharges is studied. A general analytical expression is derived for the figure of merit J/Pd associated with these waves. This is coupled with a ray tracing code, allowing the calculation of the total current generated per unit incident power in realistic Tokamak conditions. The results show that electron Bernstein waves can drive substantial currents even at very low electron temperatures.

日本語訳

トカマク放電の立ち上げ段階における電子バーンスタイン波による電流駆動を研究した。これらの波に関連する性能指数J/Pdに対する一般的な解析式を導出した。これを光線追跡コードと結合し、現実的なトカマク条件下での単位入射電力あたりの全電流を計算することを可能にした。結果は、電子バーンスタイン波が非常に低い電子温度でもかなりの電流を駆動できることを示している。

wiki

Current driveBernstein waveElectron Bernstein wavesWave current drive
この論文にはまだAI要約がありません。

関連論文

Study of directly launched ion Bernstein waves in a tokamak

1987PHYSICAL REVIEW LETTERS

Emission of electron Bernstein waves in plasmas

2002Physics of Plasmas

Electron Bernstein waves in a spherical tokamak with a magnetic well

2005Plasma Physics and Controlled Fusion

Electron cyclotron-electron Bernstein wave emission diagnostics for the COMPASS tokamak

2010Review of Scientific Instruments

Reduction of the electron thermal conductivity produced by ion Bernstein waves on the Frascati Tokamak Upgrade tokamak

2001Physics of Plasmas

Excitation, propagation, and damping of electron Bernstein waves in tokamaks

2000Physics of Plasmas

Millimeter wave tokamak heating and current drive with a high power free electron laser

1988Plasma Physics and Controlled Fusion

Full-wave calculation of sheared poloidal flow driven by high-harmonic ion Bernstein waves in tokamak plasmas

2000Physics of Plasmas

Control of plasma current during lower hybrid current drive in the JFT-2M tokamak

1985Nuclear Fusion

Experimental and numerical investigations of electron transport enhancement by electron-cyclotron plasma-wave interaction in tokamaks

2023Plasma Physics and Controlled Fusion