In view of the realization of the negative ion beam injectors for ITER, a test facility, named SPIDER, is under construction in Padova (Italy) to study and optimize production and extraction of negative ions. The present paper is devoted to the analysis of the expected first operations of SPIDER in terms of single-beamlet and multiple-beamlet simulations of the hydrogen beam optics in various operational conditions. The effectiveness of the methods adopted to compensate for the magnetic deflection of the particles is also assessed. Indications for a sequence of the experimental activities are obtained
The requirements of ITER neutral beam injectors (1 MeV, 40 A negative deuterium ion current for 1 h)...
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fu...
Negative ion sources are fundamental components of neutral beam injectors (NBI), one of the main hea...
In view of the realization of the negative ion beam injectors for ITER, a test facility, named SPIDE...
The ITER tokamak requires two injectors of neutral beams resulting from the neutralisation of accele...
The ITER Neutral Beam Test Facility (PRIMA) is planned to be built at Consorzio RFX (Padova, Italy)....
SPIDER is one of two projects of the ITER Neutral Beam Test Facility under construction in Padova, I...
SPIDER (Source for Production of Ions of Deuterium Extracted from a Rf plasma) is an ion source test...
The negative-ion based neutral beam injector for heating and current drive of the ITER plasma (ITER ...
Each ITER Neutral Beam Injector (NBI) will provide 16.5 MW hydrogen/deuterium particles, electrostat...
SPIDER is a full-size Negative Ion Source and a multi-beamlet 100 kV accelerator, presently under co...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
In the context of the development of the 1 MV neutral beam injector for the ITER tokamak [1], the st...
To reach fusion conditions and control plasma configuration in ITER, a suitable combination of addit...
A facility will be built in Padova (Italy) to develop, commission, and optimize the neutral beam inj...
The requirements of ITER neutral beam injectors (1 MeV, 40 A negative deuterium ion current for 1 h)...
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fu...
Negative ion sources are fundamental components of neutral beam injectors (NBI), one of the main hea...
In view of the realization of the negative ion beam injectors for ITER, a test facility, named SPIDE...
The ITER tokamak requires two injectors of neutral beams resulting from the neutralisation of accele...
The ITER Neutral Beam Test Facility (PRIMA) is planned to be built at Consorzio RFX (Padova, Italy)....
SPIDER is one of two projects of the ITER Neutral Beam Test Facility under construction in Padova, I...
SPIDER (Source for Production of Ions of Deuterium Extracted from a Rf plasma) is an ion source test...
The negative-ion based neutral beam injector for heating and current drive of the ITER plasma (ITER ...
Each ITER Neutral Beam Injector (NBI) will provide 16.5 MW hydrogen/deuterium particles, electrostat...
SPIDER is a full-size Negative Ion Source and a multi-beamlet 100 kV accelerator, presently under co...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
In the context of the development of the 1 MV neutral beam injector for the ITER tokamak [1], the st...
To reach fusion conditions and control plasma configuration in ITER, a suitable combination of addit...
A facility will be built in Padova (Italy) to develop, commission, and optimize the neutral beam inj...
The requirements of ITER neutral beam injectors (1 MeV, 40 A negative deuterium ion current for 1 h)...
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fu...
Negative ion sources are fundamental components of neutral beam injectors (NBI), one of the main hea...