Consorzio RFX and INFN-LNL are building a flexible small ion source (NIO1) capable of producing about 130 mA of H- ions accelerated at 60 KeV. Aim of the experiment is to test and develop the instrumentation for SPIDER and MITICA, the prototypes respectively of the negative ion sources and of the whole neutral beam injectors which will operate in the ITER experiment. As SPIDER and MITICA, NIO1 will be monitored with Beam Emission Spectroscopy (BES), a non-invasive diagnostic based on the analysis of the spectrum of the $H_\alpha$ emission produced by the interaction of the energetic ions with the background gas. Aim of BES is to monitor direction, divergence and uniformity of the ion beam. The precision of these measurements depends on a nu...
The Heating Neutral Beam Injectors (HNBs) for ITER will have to deliver 16.7 MW beams of H/D particl...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
Consorzio RFX and INFN-LNL have designed, built and operated the compact radiofrequency negative ion...
The NIO1 experiment hosts a flexible RF H- ion source, developed by INFN-LNL and Consorzio RFX to im...
A test facility for the development of the Neutral Beam Injection system for ITER is under construct...
A facility will be built in Padova (Italy) to develop, commission, and optimize the neutral beam inj...
The Neutral Beam Injectors of the ITER experiment will rely on negative ion sources to produce 16.7 ...
NIO1 is a compact and flexible radiofrequency H- ion source, developed by Consorzio RFX and INFN-LNL...
Neutral Beam Injectors (NBIs), which need to be strongly optimized in the perspective of DEMO reacto...
A relatively compact ion source, named NIO1 (Negative-Ion Optimization 1), with 9 beam apertures for...
The SPIDER experiment, operated at the Neutral Beam Test Facility of Consorzio RFX, Padua, hosts the...
The Neutral beam Injectors of the ITER experiment will be based on negative ion sources for the gene...
Powerful neutral beam injectors (NBI) are required as heating and current drive systems for tokamaks...
For the experimental fusion reactor ITER, which should show the feasibility of sustaining a fusion p...
The NIO1 experiment, built and operated at Consorzio RFX, hosts an RF negative ion source, from whic...
The Heating Neutral Beam Injectors (HNBs) for ITER will have to deliver 16.7 MW beams of H/D particl...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
Consorzio RFX and INFN-LNL have designed, built and operated the compact radiofrequency negative ion...
The NIO1 experiment hosts a flexible RF H- ion source, developed by INFN-LNL and Consorzio RFX to im...
A test facility for the development of the Neutral Beam Injection system for ITER is under construct...
A facility will be built in Padova (Italy) to develop, commission, and optimize the neutral beam inj...
The Neutral Beam Injectors of the ITER experiment will rely on negative ion sources to produce 16.7 ...
NIO1 is a compact and flexible radiofrequency H- ion source, developed by Consorzio RFX and INFN-LNL...
Neutral Beam Injectors (NBIs), which need to be strongly optimized in the perspective of DEMO reacto...
A relatively compact ion source, named NIO1 (Negative-Ion Optimization 1), with 9 beam apertures for...
The SPIDER experiment, operated at the Neutral Beam Test Facility of Consorzio RFX, Padua, hosts the...
The Neutral beam Injectors of the ITER experiment will be based on negative ion sources for the gene...
Powerful neutral beam injectors (NBI) are required as heating and current drive systems for tokamaks...
For the experimental fusion reactor ITER, which should show the feasibility of sustaining a fusion p...
The NIO1 experiment, built and operated at Consorzio RFX, hosts an RF negative ion source, from whic...
The Heating Neutral Beam Injectors (HNBs) for ITER will have to deliver 16.7 MW beams of H/D particl...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
Consorzio RFX and INFN-LNL have designed, built and operated the compact radiofrequency negative ion...