Ion cyclotron emission (ICE) is probably excited by non-thermal ion velocity distribution. Identifying characteristics of the ion velocity distribution that excites the ICE can contribute to understanding its emission mechanism. The characteristics of fast helium-3 (3He) ion velocity distribution that excites 3He ICE [ICE(3He)] on JT-60U are investigated. First, fast deuterium ion distributions, which mainly contribute to deuterium-deuterium fusion reactions, are calculated with a fast ion orbit following Monte-Calro code (OFMC code) under realistic conditions to evaluate birth spatial and velocity distributions of the 3He ions. Then, the fast 3He ion distributions are evaluated with the OFMC code using the birth distributions and compared ...
The velocity distribution functions of the newly born (t = 0) charged fusion products of tokamak dis...
Ion cyclotron emission (ICE) driven by perpendicular neutral beam-injected (NBI) deuterons, together...
Ion cyclotron emission (ICE) is detected from all large toroidal magnetically confined fusion (MCF) ...
The Magneto-acoustic Cyclotron Instability (MCI) is a possible emission mechanism for Ion Cyclotron ...
The ion cyclotron emission (ICE) is triggered by the free energy from an anisotropic distribution of...
Ion cyclotron emissions (ICEs) are generally considered to be emissions of fast waves driven by velo...
The detection of fast particle-driven waves in the ion cyclotron frequency range (ion cyclotron emis...
New high quality measurements of ion cyclotron emission (ICE) from KSTAR and LHD greatly extend the ...
Recent JET experiments have been dedicated to the studies of fusion reactions between deuterium (D) ...
Ion cyclotron emission (ICE) has been reported from most magnetic confinement fusion devices (MCF), ...
"Fast ion velocity distribution is investigated using ICRF minority heating in Heliotron J with spec...
Third harmonic cyclotron heating is an effective tool for accelerating deuterium (D) beams to the Me...
Measurements are reported of electromagnetic emission close to the cyclotron frequency of energetic ...
The velocity distribution functions of the newly born (t = 0) charged fusion products of tokamak dis...
Ion cyclotron emission (ICE) driven by perpendicular neutral beam-injected (NBI) deuterons, together...
Ion cyclotron emission (ICE) is detected from all large toroidal magnetically confined fusion (MCF) ...
The Magneto-acoustic Cyclotron Instability (MCI) is a possible emission mechanism for Ion Cyclotron ...
The ion cyclotron emission (ICE) is triggered by the free energy from an anisotropic distribution of...
Ion cyclotron emissions (ICEs) are generally considered to be emissions of fast waves driven by velo...
The detection of fast particle-driven waves in the ion cyclotron frequency range (ion cyclotron emis...
New high quality measurements of ion cyclotron emission (ICE) from KSTAR and LHD greatly extend the ...
Recent JET experiments have been dedicated to the studies of fusion reactions between deuterium (D) ...
Ion cyclotron emission (ICE) has been reported from most magnetic confinement fusion devices (MCF), ...
"Fast ion velocity distribution is investigated using ICRF minority heating in Heliotron J with spec...
Third harmonic cyclotron heating is an effective tool for accelerating deuterium (D) beams to the Me...
Measurements are reported of electromagnetic emission close to the cyclotron frequency of energetic ...
The velocity distribution functions of the newly born (t = 0) charged fusion products of tokamak dis...
Ion cyclotron emission (ICE) driven by perpendicular neutral beam-injected (NBI) deuterons, together...
Ion cyclotron emission (ICE) is detected from all large toroidal magnetically confined fusion (MCF) ...