NBImag is a code suitable for the design and opti- mization of complex magnetic field configurations, such as that of a multiaperture, multistage negative ion source and accelerator. The NBImag code has been developed for the design of the ITER neutral beam injector, whose full-size prototype, MITICA, is presently under construction in Padua, Italy. The ITER injector shall produce a focused beam of neutral particles (H or D) having an energy of about 1 MeV and a total power of 16.5 MW for 3600-s continuous operation. The NBImag code is based on an integral formulation and allows an efficient calculation of any static magnetic field configuration on the basis of the geometry of the magnetic sources, with linear material and permanent magnets...
Optimisation of the magnetic field configuration for the negative ion source of ITER neutral beam in...
The injection of high energy beams of neutral particles is a fundamental method for plasma heating t...
Each Injector of the ITER Neutral Beam system will deliver a power up to 16.5MW and guarantee steady...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
MITICA is a prototype of the heating neutral beam (HNB) Injectors for ITER, built with the purpose o...
The work of this PhD thesis has been developed inside the framework of magnetic confinement thermonu...
MITICA is a negative-Ion-based 1 MeV Neutral Beam Injector. The transverse magnetic field in the pla...
Two Neutral Beam Injectors (NBI) are foreseen to provide a substantial fraction of the heating power...
The ITER Neutral Beam Test Facility (PRIMA) is presently under construction at Consorzio RFX (Padova...
A common problem of the multi-beamlet, negative-ion based Heating Neutral Beam (HNB) Injectors prese...
MITICA is a prototype of the Heating Neutral Beam (HNB) Injectors for ITER [1]. The MITICA scientifi...
The negative ion source of the neutral beam injectors for ITER requires that the co-extracted electr...
A joint Japan-EU R&D activity is in progress to optimize the accelerator for the ITER NBI. The accel...
International audienceA joint Japan-EU R&D activity is in progress to optimize the accelerator for t...
In the ITER neutral beam injectors (NBI), the presence of an external variable magnetic field genera...
Optimisation of the magnetic field configuration for the negative ion source of ITER neutral beam in...
The injection of high energy beams of neutral particles is a fundamental method for plasma heating t...
Each Injector of the ITER Neutral Beam system will deliver a power up to 16.5MW and guarantee steady...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
MITICA is a prototype of the heating neutral beam (HNB) Injectors for ITER, built with the purpose o...
The work of this PhD thesis has been developed inside the framework of magnetic confinement thermonu...
MITICA is a negative-Ion-based 1 MeV Neutral Beam Injector. The transverse magnetic field in the pla...
Two Neutral Beam Injectors (NBI) are foreseen to provide a substantial fraction of the heating power...
The ITER Neutral Beam Test Facility (PRIMA) is presently under construction at Consorzio RFX (Padova...
A common problem of the multi-beamlet, negative-ion based Heating Neutral Beam (HNB) Injectors prese...
MITICA is a prototype of the Heating Neutral Beam (HNB) Injectors for ITER [1]. The MITICA scientifi...
The negative ion source of the neutral beam injectors for ITER requires that the co-extracted electr...
A joint Japan-EU R&D activity is in progress to optimize the accelerator for the ITER NBI. The accel...
International audienceA joint Japan-EU R&D activity is in progress to optimize the accelerator for t...
In the ITER neutral beam injectors (NBI), the presence of an external variable magnetic field genera...
Optimisation of the magnetic field configuration for the negative ion source of ITER neutral beam in...
The injection of high energy beams of neutral particles is a fundamental method for plasma heating t...
Each Injector of the ITER Neutral Beam system will deliver a power up to 16.5MW and guarantee steady...