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

The effect of the toroidal wavenumber spectrum on the high energy tail formation during ICRH

J. Carlsson, L.-G. Eriksson, T. Hellsten1997年被引用 17Nuclear FusionIF 3出版社

The influence of finite orbit width effects and wave induced spatial diffusion on the resonant ion distribution function in the presence of ion cyclotron resonance heating (ICRH) is studied. In particular, it is found that the toroidal wavenumber spectrum affects the fast ion energy density and the local formation of the high energy tail. For high energy ions interacting with waves having a large toroidal wavenumber, the wave induced spatial diffusion plays an equal or even more important role than the finite orbit width. Only in the limit of artificially high plasma current and low toroidal wavenumber are results from two dimensional (2-D) orbit averaged Fokker-Planck models recovered. The finite orbit width and the wave induced spatial diffusion also produce ions that follow loss orbits, resulting in localized high energy ions losses to the wall

日本語訳

イオンサイクロトロン共鳴加熱(ICRH)の存在下における、共鳴イオン分布関数に対する有限軌道幅効果と波動誘起空間拡散の影響を研究した。特に、トロイダル波数スペクトルが高速イオンエネルギー密度と高エネルギー尾部の局所的形成に影響を与えることが見出された。大きなトロイダル波数を持つ波動と相互作用する高エネルギーイオンにとって、波動誘起空間拡散は有限軌道幅と同等かそれ以上の重要な役割を果たす。人為的に高いプラズマ電流と低いトロイダル波数の極限においてのみ、2次元(2-D)軌道平均フォッカー・プランクモデルからの結果が再現される。有限軌道幅と波動誘起空間拡散はまた、損失軌道に乗るイオンを生成し、その結果、局所的な高エネルギーイオンの壁への損失をもたらす。

wiki

Ion cyclotron heating
この論文にはまだAI要約がありません。

関連論文

Effects of finite drift orbit width and RF-induced spatial transport on plasma heated by ICRH

2004Nuclear Fusion

Diffusion induced by cyclotron resonance heating

1986Nuclear Fusion

Toroidal mode conversion in the ICRF

1998Nuclear Fusion

`Quasi-local' wave equations in toroidal geometry with applications to fast wave propagation and absorption at high harmonics of the ion cyclotron frequency

2002Plasma Physics and Controlled Fusion

Electrostatic ion cyclotron waves in a steady-state toroidal plasma

1989Plasma Physics and Controlled Fusion

Kinetic description of propagation and absorption structures of ICRF waves

1983Nuclear Fusion

Three-dimensional structures of ICRF waves in tokamak plasmas

1984Nuclear Fusion

Toroidicity effects on the absorption of IC waves by electrons

2020Nuclear Fusion

MHD surface waves in a resistive cylindrical plasma at low to ion cyclotron frequency

1984Plasma Physics and Controlled Fusion

Constant-k|| toroidal coordinates and their application to tokamak plasma high-frequency dielectric response theory: I. Anisotropic equilibria

2006Plasma Physics and Controlled Fusion