摘要
The inertia and Landau damping of low-frequency magnetohydrodynamical modes are investigated using the drift-kinetic energy principle for the motion along the magnetic field. Toroidal trapping of the ions decreases the Landau damping and increases the inertia for frequencies below (r/R) 1/2v thi / qR. The theory is applied to toroidicity-induced Alfvén eigenmodes and to resistive wall modes in rotating plasmas. An explanation of the beta-induced Alfvén eigenmode is given in terms of the Pfirsch-Schlüter-like enhancement of inertia at low frequency. The toroidal inertia enhancement also increases the effects of plasma rotation on resistive wall modes.
| 原文 | English |
|---|---|
| 頁(從 - 到) | 3013-3022 |
| 頁數 | 10 |
| 期刊 | Physics of Plasmas |
| 卷 | 3 |
| 發行號 | 8 |
| DOIs | |
| 出版狀態 | Published - 1996 |
All Science Journal Classification (ASJC) codes
- 凝聚態物理學
指紋
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