The ITER project requires additional heating by two neutral beam injectors, each accelerating to 1MV a 40A beam of negative deuterium ions, to deliver to the plasma a power of about 17 MW for one hour. As these requirements have never been experimentally met, it was recognized as necessary to setup a test facility, PRIMA (Padova Research on ITER Megavolt Accelerator), in Italy, including a full-size negative ion source, SPIDER, and a prototype of the whole ITER injector, MITICA, aiming to develop the heating injectors to be installed in ITER. This realization is made with the main contribution of the European Union, through the Joint Undertaking for ITER (F4E), the ITER Organization and Consorzio RFX which hosts the Test Facility. The Japan...
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fu...
The requirements of ITER neutral beam injectors (1 MeV, 40 A negative deuterium ion current for 1 h)...
The requirements of ITER neutral beam injectors (1 MeV, 40 A negative deuterium ion current for 1 h)...
The ITER project requires additional heating by two neutral beam injectors, each accelerating to 1MV...
The ITER project requires additional heating by two neutral beam injectors, each accelerating to 1MV...
The ITER Neutral Beam Test Facility (NBTF), called PRIMA (Padova Research on ITER Megavolt Accelerat...
Heating neutral beam (HNB) injectors, necessary to achieve burning conditions and to control plasma ...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
Heating neutral beam (HNB) injectors, necessary to achieve burning conditions and to control plasma ...
The ITER Neutral Beam Test Facility (PRIMA) is presently under construction at Consorzio RFX (Padova...
The ITER Neutral Beam Test Facility (PRIMA) is presently under construction at Consorzio RFX (Padova...
For ITER heating and current drive, two neutral beam injectors (NBIs) are planned, delivering a tota...
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fu...
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fu...
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fu...
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fu...
The requirements of ITER neutral beam injectors (1 MeV, 40 A negative deuterium ion current for 1 h)...
The requirements of ITER neutral beam injectors (1 MeV, 40 A negative deuterium ion current for 1 h)...
The ITER project requires additional heating by two neutral beam injectors, each accelerating to 1MV...
The ITER project requires additional heating by two neutral beam injectors, each accelerating to 1MV...
The ITER Neutral Beam Test Facility (NBTF), called PRIMA (Padova Research on ITER Megavolt Accelerat...
Heating neutral beam (HNB) injectors, necessary to achieve burning conditions and to control plasma ...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
Heating neutral beam (HNB) injectors, necessary to achieve burning conditions and to control plasma ...
The ITER Neutral Beam Test Facility (PRIMA) is presently under construction at Consorzio RFX (Padova...
The ITER Neutral Beam Test Facility (PRIMA) is presently under construction at Consorzio RFX (Padova...
For ITER heating and current drive, two neutral beam injectors (NBIs) are planned, delivering a tota...
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fu...
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fu...
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fu...
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fu...
The requirements of ITER neutral beam injectors (1 MeV, 40 A negative deuterium ion current for 1 h)...
The requirements of ITER neutral beam injectors (1 MeV, 40 A negative deuterium ion current for 1 h)...