It is a widely recognized phenomenon that, in negative ion sources for NBI, the magnetic fields in the source cause an asymmetry of the current density at the meniscus, which affects the beam optics. In order to achieve a more realistic estimation of the negative ion beam optics, the ion current density profile at the beamlet meniscus is sometimes assumed to be non-symmetric with respect to the beamlet axis. The new hypothesis tested in this paper is an empirical law obtained by recent investigations on a similar Kamaboko ion source, which relates this asymmetry to the magnetic field strength at the meniscus and to the power injected in the ion source. For the first time this hypothesis is used to directly and correctly predict the value of...
For the experimental fusion reactor ITER, which should show the feasibility of sustaining a fusion p...
ITER is an experimental fusion device and requires two Neutral Beam Injectors (NBIs) for plasma heat...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
It is a widely recognized phenomenon that, in negative ion sources for NBI, the magnetic fields in t...
Negative ion sources for fusion are required to generate the stable high-energy and high-current neg...
Neutral beams are a valuable option to provide heat and current drive to a magnetically confined pla...
During 2016, a joint experimental campaign was carried out by QST and Consorzio RFX on the Negative ...
In the framework of the collaboration between Consorzio RFX (Padova, Italy) and QST (Naka, Japan) tw...
The optics design of the multi-beamlet negative ion accelerator for MITICA has been verified by mean...
The shape of a plasma meniscus is a key factor to determine the beam focusing. The physics model of ...
In order to understand the physics mechanism of a negative ion extraction in negative ion sources, a...
The hollow meniscus shape in the multi-stage MeV-class accelerator for ITER was identified for the f...
ITER neutral beam injector (NBI) is required to produce 1 MeV 16.5 MW neutral beams for 3600 seconds...
The megavolt ITER injector concept advancement neutral injector test facility will be constituted by...
For the ITER fusion experiment, two neutral beam injectors are required for plasma heating and curre...
For the experimental fusion reactor ITER, which should show the feasibility of sustaining a fusion p...
ITER is an experimental fusion device and requires two Neutral Beam Injectors (NBIs) for plasma heat...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
It is a widely recognized phenomenon that, in negative ion sources for NBI, the magnetic fields in t...
Negative ion sources for fusion are required to generate the stable high-energy and high-current neg...
Neutral beams are a valuable option to provide heat and current drive to a magnetically confined pla...
During 2016, a joint experimental campaign was carried out by QST and Consorzio RFX on the Negative ...
In the framework of the collaboration between Consorzio RFX (Padova, Italy) and QST (Naka, Japan) tw...
The optics design of the multi-beamlet negative ion accelerator for MITICA has been verified by mean...
The shape of a plasma meniscus is a key factor to determine the beam focusing. The physics model of ...
In order to understand the physics mechanism of a negative ion extraction in negative ion sources, a...
The hollow meniscus shape in the multi-stage MeV-class accelerator for ITER was identified for the f...
ITER neutral beam injector (NBI) is required to produce 1 MeV 16.5 MW neutral beams for 3600 seconds...
The megavolt ITER injector concept advancement neutral injector test facility will be constituted by...
For the ITER fusion experiment, two neutral beam injectors are required for plasma heating and curre...
For the experimental fusion reactor ITER, which should show the feasibility of sustaining a fusion p...
ITER is an experimental fusion device and requires two Neutral Beam Injectors (NBIs) for plasma heat...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...