RF Heating and Current Drive in Magnetically Confined Plasma : a Historical Perspective(p. 3) |
by Porkolab, Miklos |
Recent Advances of RF Systems for Magnetic Fusion (p. 13) |
by Jacquinot, J |
RF heating needs and plans for ITER (p. 25) |
by Bora, Dhiraj |
Modification of Sawtooth Oscillations with ICRF Waves in the JET Tokamak (p. 35) |
by Mantsinen, M J |
ICRH of JET and LHD Majority Ions at Their Fundamental Cyclotron Frequency (p. 43) |
by Krasilnikov, A V |
Improved break-in-slope analysis for the estimation of power deposition profiles in JET (p. 47) |
by Lerche, E A |
D majority heating in JET plasmas : ICRH modelling and experimental RF deposition(p. 51) |
by Lerche, E |
Coupling Of The JET ICRF Antennas In ELMy H-mode Plasmas With ITER Relevant Plasma - Straps Distance (p. 55) |
by Mayoral, M L |
Toroidal Rotation in RF Heated JET Plasmas (p. 59) |
by Eriksson, L G |
Recent experimental results and modeling of RF heating of ($^{3}He$)-D JET plasmas : RF as a tool to study transport(p. 63) |
by VanEester, D |
Predictive Analysis of High Power ICRF Heating in JET (p. 67) |
by Laxåback, M |
ICRF mode conversion heating and long-pulse discharges in LHD (p. 71) |
by Saitô, K |
ICRF Performance with Metallic Plasma Facing Components in Alcator C-Mod (p. 75) |
by Wukitch, S J |
Tungsten Sputtering during ICRF in ASDEX Upgrade (p. 83) |
by Bobkov, Vl |
Mode Conversion Current Drive studies on Alcator C-Mod (p. 87) |
by Parisot, A |
ICRF Heating with $\omega < \omega_{ci}$ in Alcator C-Mod (p. 91) |
by Phillips, C K |
Effect of Energetic Trapped Particles Produced by ICRF Wave Heating on Sawtooth Instability in the DIII-D Tokamak (p. 95) |
by Choi, M |
Analysis of ICRF-Accelerated Ions in ASDEX Upgrade (p. 99) |
by Mantsinen, M J |
Toroidal Rotation in ICRF only Heated ASDEX Upgrade Plasmas with Low Momentum Input (p. 103) |
by Assas, S C |
HHFW Heating Efficiency on NSTX versus $B_{\Phi}$ and Antenna $k_{||} (p. 107) |
by Hosea, J |
Stochastic RF Heating of Thermal Ions (p. 111) |
by Fredrickson, E D |
RF Plasma Production in Uragan-2M Torsatron (p. 115) |
by Moiseenko, V E |
The Tore Supra ITER like ICRF antenna prototype (p. 119) |
by Vulliez, K |
ITER-Like Antenna electrical performance (p. 127) |
by Argouarch, A |
Report On The Commissioning Of The JET-EP ITER-Like ICRH Antenna (p. 131) |
by Durodié, F |
RF Measurements and Modeling from the JET-ITER Like Antenna Testing (p. 135) |
by Vrancken, M |
Influence of mutual coupling between ICRH antenna straps on the load resilience of hybrid couplers (p. 139) |
by Lamalle, P U |
Hybrid Couplers On The JET ICRF System : Commissioning And First Results on ELMs(p. 143) |
by Mayoral, M -L |
Recent Developments in the External Conjugate-T Matching Project at JET (p. 147) |
by Monakhov, I |
Voltage Node Arcing in the ICRH Antenna Vacuum Transmission Lines at JET (p. 151) |
by Monakhov, I |
Mechanical design proposal of an Ions Cyclotron Resonant Heating antenna for ITER (p. 155) |
by Agarici, G |
Status of the ITER ICRF system design - `Externally Matched' approach (p. 159) |
by Lamalle, P U |
Study of the Load Resilient External Matching Circuit for the ITER ICRH/FWCD System by means of its Mock-up. (p. 163) |
by Messiaen, A |
Benchmark simulations of ICRF antenna coupling (p. 167) |
by Louche, F |
The analysis of complex antenna structures (like the ITER array) using TOPICA (p. 171) |
by Maggiora, R |
Simulations of different Faraday screen configurations for the ITER ICRH antenna (p. 175) |
by Braun, F |
A Feasibility Study on a Load Resilient Antenna for the KSTAR ICRF Heating System (p. 179) |
by Kwak, Jong-Gu |
Modeling of the EAST ICRF antenna with ICANT Code (p. 183) |
by Qin, Chengming |
Fast Ferrite ICRF Matching System on Alcator C-Mod (p. 187) |
by Lin, Y |
A Method of Tuning Resonant Loops (p. 191) |
by Baity, F W |
Study of RF Breakdown Mechanisms Relevant to an ICH Antenna Environment (p. 195) |
by Caughman, J B O |
Comparison of Different Arc Detection Methods during Plasma Operations with ICRF Heating on ASDEX Upgrade (p. 203) |
by D'Inca, R |
Assessment of the RF field and current levels on the ITER blanket modules and of possible grounding solutions for the ICRF antenna (p. 207) |
by Louche, F |
Progress in Arc Safety System Based on Harmonics Detection for ICRH Antennae (p. 211) |
by Berger-By, G |
RF-sheath assessment of ICRF Faraday Screens. (p. 215) |
by Colas, L |
Modeling of DC potential structures induced by RF sheaths with transverse currents in front of ICRF antenna (p. 219) |
by Faudot, E |
Far Field Sheaths Due to Fast Waves Incident on Material Boundaries (p. 223) |
by D'Ippolito, D A |
Control of Current Profile and Instability by Radiofrequency Wave Injection in JT-60U and Its Applicability in JT-60SA (p. 229) |
by Isayama, A |
RF Coupling and Antenna Heat Load Control for Combined LHCD and ICRH in Tore Supra (p. 237) |
by Ekedahl, A |
Status of the Tore Supra CIMES Project (p. 245) |
by Kazarian, F |
Overview of recent results on Heating and Current Drive in JET (p. 249) |
by Ongena, J |
LH Wave Coupling And ICRF Sheaths At JET (p. 257) |
by Kirov, K K |
LH Wave Coupling over ITER-Like Distances at JET (p. 261) |
by Rantamäki, K |
Lower hybrid current drive in experiments for transport barriers at high $\beta_{N}$ of JET (Joint European Torus) (p. 265) |
by Cesario, R C |
Lower Hybrid Current Drive Experiments in Alcator C-Mod (p. 269) |
by Wilson, J R |
Lower Hybrid Coupling Experiments on Alcator C-Mod (p. 277) |
by Wallace, G |
Measurements and Modeling of X-Ray and ECE Spectra During LHCD Experiments on Alcator C-Mod (p. 281) |
by Schmidt, A E |
Full-wave Electromagnetic Field Simulations of Lower Hybrid Waves in Tokamaks (p. 285) |
by Wright, J C |
Scattering from edge density fluctuations on the lower hybrid waves in FTU (p. 289) |
by Calabrò, Giuseppe |
Advanced Lower Hybrid Current Drive Modeling (p. 293) |
by Peysson, Y |
Full-wave Simulations of LH wave propagation in toroidal plasma with non-Maxwellian electron distributions (p. 297) |
by Valeo, E J |
TOPLHA : an accurate and efficient numerical tool for analysis and design of LH antennas(p. 301) |
by Milanesio, D |
Simulations of LH coupling in the Madison Symmetric Torus Reversed Field Pinch (p. 305) |
by Carlsson, J |
Validating the Lower Hybrid Interdigital-line Antenna on MST (p. 309) |
by Kaufman, M C |
Diagnosis of Lower Hybrid on MST (p. 313) |
by Burke, D R |
LHCD Scenarios for Spherical Tokamak Plasmas (p. 317) |
by Takase, Y |
Electron Bernstein Wave Studies in MAST (p. 323) |
by Shevchenko, V |
Electron Bernstein Wave Research on NSTX and PEGASUS (p. 331) |
by Diem, S J |
Plans for Electron Bernstein Wave and Electron Cyclotron Heating in NSTX (p. 339) |
by Taylor, G |
Simulation of EBW Heating in WEGA (p. 343) |
by Preinhaelter, J |
Electron Bernstein Wave Experiment on the Madison Symmetric Torus (p. 347) |
by Anderson, J K |
The Electron Bernstein Waves Heating Project In The TJ-II Stellarator (p. 351) |
by Fernández, A |
Harmonic Generation in EBW Injection into Plasmas (p. 355) |
by Xiang, Nong |
Stabilization of Neoclassical Tearing Modes in Tokamaks by Radio Frequency Current Drive (p. 361) |
by LaHaye, R J |
Increasing NTM Stabilization Efficiency Using Modulated ECCD In ASDEX Upgrade (p. 369) |
by Manini, A |
ECH experiments aiming at further advanced operations in LHD (p. 377) |
by Igami, H |
Vertical Launch Third Harmonic Electron Cyclotron Resonance Heating of H-mode on TCV and Access to Quasi-Stationary ELM-free H-mode (p. 385) |
by Porte, L |
Modeling of Time-dependent Radial Transport of Electron Distribution Perturbations Caused by ECCD in DIII-D (p. 393) |
by Harvey, R W |
Electron Cyclotron Current Drive at High Electron Temperature on DIII-D (p. 397) |
by Petty, C C |
Sawtooth Control With ECCD On Tore Supra (p. 401) |
by Lennholm, M |
Demonstration of Steady State Operation with 1 MW of 170 GHz gyrotron for ITER (p. 405) |
by Kasugai, Atsushi |
Design of Electron Cyclotron Heating and Current Drive System of ITER (p. 413) |
by Kobayashi, N |
The Enhanced Performance Launcher Design For The ITER Upper Port ECH Antenna (p. 417) |
by Henderson, M A |
The W7-X ECRH Plant : Recent Achievements(p. 421) |
by Erckmann, V |
Upgrade Of The TH1506B 118 GHz Gyrotron Using Modeing Tools (p. 425) |
by Darbos, C |
Second Harmonic Breakdown in KSTAR (p. 429) |
by Bae, Y S |
Physics Research in the SciDAC Center for Wave-Plasma Interactions (p. 435) |
by Bonoli, P T |
Quasilinear Evolution of Multiple Non-thermal Ion Distributions in ICRF Heating (p. 443) |
by Jaeger, E F |
Time-Dependent Modeling of Nonlinear Plasma Response to Fast Waves With Multiple Damping Mechanisms (p. 447) |
by Pinsker, R I |
Extended Budden problem associated with an energetic-particle population (p. 451) |
by Brizard, A J |
Effects of ICRH on the Dynamics of Fast Particle Excited Alfvén Eigenmodes (p. 455) |
by Bergkvist, T |
Full-wave modeling of ICRF waves : global and quasi-local descriptions(p. 459) |
by Dumont, R J |
A New Normal Form for Multidimensional Mode Conversion (p. 463) |
by Tracy, E R |
Higher Order Corrections to Resonant Mode Conversion (p. 467) |
by Richardson, A S |
Gyrocenter Gauge Theory and Algorithm for Nonlinear Particle Simulations of Radio-Frequency Waves in Plasmas (p. 471) |
by Qin, Hong |
High Frequency Gyrokinetic Particle-in-Cell Simulation : Application to Heating of Magnetically Confined Plasmas(p. 475) |
by Kolesnikov, Roman A |
Towards a Predictive Model of Power Loss from Parametric Decay of ICRF Waves (p. 479) |
by Myra, J R |
Three-D Complex-Geometry Semi-Implicit Finite-Difference Time-Domain Simulation of Edge Plasma at RF Time-Scales (p. 483) |
by Smithe, David N |
PIC Modeling Of Collisional Skin Depth In RF-Driven Atmospheric Pressure Plasmas (p. 487) |
by Roark, C M |
A Negative Hydrogen-Ion Source for SNS Using a Helicon Plasma Generator (p. 493) |
by Goulding, R H |
Microwave Excitation In ECRIS plasmas (p. 497) |
by Ciavola, G |
Accurate design of ICRF antennas for RF plasma thruster acceleration units with TOPICA (p. 501) |
by Lancellotti, V |
Rocket Propulsion Through Multiply-Charged Ions From a Mirror Plasma (p. 505) |
by Leung, L |
Strong RF Heating in a Mirror During Plasma Build-up (p. 509) |
by Moiseenko, V E |
Possibilities of Phased Array Antenna (PAA) for Fusion (p. 513) |
by Shubov, Anatoly G |
Analysis of the heating of the Magnum-PSI and Pilot-PSI plasma in the GHz range (p. 517) |
by Koch, R |