[1] ITER Physics Expert Group. ITER physics basis 1999 plasma auxiliary heating and current drive [J]. Nucl. Fusion, 1999, 39: 2495.
[2] Brambilla M. Slow wave launching at the lower hybrid frequency using phased waveguide array [J]. Nucl. Fusion, 1976, 16: 47.
[3] Meneghini O, Lau C, Shiraiwaet S, et al. SOL Effects on LH wave coupling and current drive performance on Alcator C-Mod [J]. AIP Conf. Proc., 2011, 1406: 411.
[4] Stevens J, Ono M , Horton R, et al. Edge density profile effects for lower hybrid waveguide coupling [J]. Nucl. Fusion, 1981, 21: 1259.
[5] Wallace G M, Parker R R, Bonoli P T, et al. Absorption of lower hybrid waves in the scrape off layer of a diverted tokamak [J]. Phys. Plasmas, 2010, 17: 082508.
[6] Cesario R, Amicucci L, Cardinali A, et al. Current drive at plasma densities required for thermonuclear reactors [J]. Nature Communications, 2010, 1:55.
[7] Paul Bonoliand T, Edward Ott. Accessibility and energy deposition of lower-hybrid waves in a tokamak with density fluctuations [J]. Phys. Rev. Lett., 1981, 46: 424.
[8] Wallace G M. Behavior of lower hybrid waves in the scrape off layer of a diverted tokamak [D]. MIT : Plasma Science and Fusion Center Massachusetts Institute of Technology, 2010, 70-71.
[9] Ekedahl A, Delpech L, Goniche M, et al. Validation of the ITER-relevant passive-active-multijunction LHCD launcher on long pulses in Tore Supra [J]. Nucl. Fusion, 2010, 50: 112002.
[10] Wu Z, Shan J F, Xu H. A new real time data acquisition system for low hybrid current drive system [C]. Proceedings of the 2012 International Conference on Communication, Electronics and Automation Engi- neering Advances in Intelligent Systems and Computing, 2013, 181: 299-303.
[11] Matthews G F. Tokamak plasma diagnosis by electrical probes [J]. Plasma Phys. Contr. Fusion, 1994, 36:1595.
[12] Petrzilka V, Mailloux J, Ongena J, et al. JET scrape- off-layer ionization at lower hybrid wave launching [J]. Plasma Phys. Contr. Fusion, 2012, 54: 074005. |