[1] Kirneva N A. Recent developments in electron cyclotron current drive [J]. Plasma Phys. Contr. Fusion, 2001, 43(12A): A195.
[2] Krivenski V, Fidone I, Giruzzi G, et al. Power dependence of electron cyclotron wave damping in tokamak plasmas [J]. Phys. Fluids, 1987, 30(2): 438.
[3] Peysson Y, Shoucri. An approximate factorization procedure for solving nine-point elliptic difference equations: application for a fast 2-D relativistic Fokker- Planck solver [J]. Comput. Phys. Commun., 1998, 109: 55.
[4] RoméM, Erckmann V, Laqua H P. Comparison of high-field-side and low-field-side launch ECCD in the W7-AS stellarator [J]. Plasma Phys. Contr. Fusion, 2003, 45: 783.
[5] Harvey R W, Perkins F W. Comparison of optimized ECCD for different launch locations in a next step tokamak reactor plasma [J]. Nucl. Fusion, 2001, 41(12): 1847.
[6] 龚学余, 彭晓炜, 谢安平, 等. 托卡马克等离子体不同运行模式下的电子回旋波电流驱动 [J]. 物理学报, 2006, 55(3): 1307.
[7] Simonetto A, Shoucri M, Farina D, et al. A numerical code for the solution of the relativistic bounce-averaged Fokker-Planck equation [R]. Milano Italy, IFP-CNR Internal Report, 2000.
[8] Shi B R, Long Y X, Dong J Q, et al. Fokker-Planck study of tokamak electron cyclotron resonance heating [J]. Chinese Phys., 2003, 12(11): 1251.
[9] Start D F H, O’Brien M R, Grace P M V. The effect of a relativistic resonance condition on the Fokker-Planck theory of ECRH current drive [J]. Plasma Phys. Contr. Fusion, 1983, 25(12): 1431.
[10] 彭晓炜, 龚学余, 刘文艳. 托卡马克等离子体中的电子回旋波电流驱动[J]. 核聚变与等离子体物理, 2005, 25(1): 29.
[11] Fidone I, Giruzzi G, Krivenski V, et al. Electron cyclotron wave damping for oblique propagation in hot plasmas [J]. Nucl. Fusion, 1986, 26(11): 1537.
[12] Mazzucato E, Fidone I, Granata G. Damping of electron cyclotron waves in dense plasmas of a compact ignition tokamak [J]. Phys. Fluids, 1987, 30(12): 3745.
[13] Krivenski V, Fidone I, Giruzzi G, et al. Improving current generation in a tokamak by electron cyclotron on waves [J]. Nucl. Fusion, 1985, 25(2): 127. |