ITER will start its operation with non-activated hydrogen and helium plasmas at a reduced magnetic field of B-0 = 2.65 T. In hydrogen plasmas, the two ion cyclotron resonance frequency (ICRF) heating schemes available for central plasma heating (fundamental H majority and 2nd harmonic He-3 minority ICRF heating) are likely to suffer from relatively low RF wave absorption, as suggested by numerical modelling and confirmed by previous JET experiments conducted in conditions similar to those expected in ITER's initial phase. With He-4 plasmas, the commonly adopted fundamental H minority heating scheme will be used and its performance is expected to be much better. However, one important question that remains to be answered is whether increased...
Radio frequency (RF) heating experiments have recently been conducted in JET (He-3)-H plasmas. This ...
Heating single ion species plasmas with ICRF is a challenging task: Fundamental ion cyclotron heatin...
Hydrogen majority plasmas will be used in the initial non-activated phase of ITER operation. Optimiz...
ITER will start its operation with non-activated hydrogen and helium plasmas at a reduced magnetic f...
Two ion cyclotron range of frequencies ( ICRF) heating schemes proposed for the half-field operation...
The most recent JET campaign has focused on characterizing operation with the "ITER-like" wall. One ...
Two ion cyclotron range of frequencies (ICRF) heating schemes proposed for the half-field operation ...
The most recent JET campaign has focused on characterizing operation with the "ITER-like" wall. One ...
Two ion cyclotron range of frequencies (ICRF) heating schemes proposed for the half-field operation ...
Two ICRF heating schemes proposed for the half-field operation phase of ITER in Hydrogen plasmas - f...
Efficient plasma heating schemes are a prerequisite for reaching fusion relevant temperatures in fus...
This paper reports on ITER-relevant ion cyclotron resonance frequency (ICRF) physics investigated on...
Radio frequency (RF) heating experiments have recently been conducted in JET (He-3)-H plasmas. This ...
Radio frequency (RF) heating experiments have recently been conducted in JET (He-3)-H plasmas. This ...
Heating single ion species plasmas with ICRF is a challenging task: Fundamental ion cyclotron heatin...
Hydrogen majority plasmas will be used in the initial non-activated phase of ITER operation. Optimiz...
ITER will start its operation with non-activated hydrogen and helium plasmas at a reduced magnetic f...
Two ion cyclotron range of frequencies ( ICRF) heating schemes proposed for the half-field operation...
The most recent JET campaign has focused on characterizing operation with the "ITER-like" wall. One ...
Two ion cyclotron range of frequencies (ICRF) heating schemes proposed for the half-field operation ...
The most recent JET campaign has focused on characterizing operation with the "ITER-like" wall. One ...
Two ion cyclotron range of frequencies (ICRF) heating schemes proposed for the half-field operation ...
Two ICRF heating schemes proposed for the half-field operation phase of ITER in Hydrogen plasmas - f...
Efficient plasma heating schemes are a prerequisite for reaching fusion relevant temperatures in fus...
This paper reports on ITER-relevant ion cyclotron resonance frequency (ICRF) physics investigated on...
Radio frequency (RF) heating experiments have recently been conducted in JET (He-3)-H plasmas. This ...
Radio frequency (RF) heating experiments have recently been conducted in JET (He-3)-H plasmas. This ...
Heating single ion species plasmas with ICRF is a challenging task: Fundamental ion cyclotron heatin...
Hydrogen majority plasmas will be used in the initial non-activated phase of ITER operation. Optimiz...