The next fusion project DEMO, which will be the evolution of the experimental fusion reactor [International Tokamak Experimental Reactor (ITER)], would require a high efficient energy production. As in ITER, DEMO will use fast Neutral Beam (NB) injectors to increase the plasma temperature needed for the fusion reaction. A way to recover the electric energy production efficiency in DEMO could be the beam energy recovery in the NB production, which is produced by a D- beam, neutralized by a gas cell with 60% efficiency. A compact energy recovery device with an axisymmetric cylindrical ion collector that uses only decelerating electric fields combined with the beam space charge effect has been recently proposed. It can be used for a test on th...
A joint Japan-EU R&D activity is in progress to optimize the accelerator for the ITER NBI. The accel...
The present ITER NB system includes two design features: short beamline design and vacuum insulated ...
International audienceIn parallel to the developments dedicated to the ITER neutral beam system, CEA...
Commercial viability of thermonuclear fusion power plants depends also on minimizing the recirculati...
A common problem of the multi-beamlet, negative-ion based Heating Neutral Beam (HNB) Injectors prese...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
NIO1 is a compact source of negative ions jointly developed by RFX and INFN, to study the physics of...
For the experimental fusion reactor ITER, which should show the feasibility of sustaining a fusion p...
DEMO(DEMOnstration Fusion Power Plant) is a proposed nuclear fusion power plant that is intended to ...
The NIO1 experiment is a compact and modular negative ion source built at Consorzio RFX, Padua, with...
International audienceAchievement of an economic fusion reactor imposes a high level of unprecedente...
Abstract. To meet the requirements of the four operating and one start-up scenarios foreseen in the ...
Neutral Beam Injectors (NBIs), which need to be strongly optimized in the perspective of DEMO reacto...
Two Neutral Beam Injectors (NBI) are foreseen to provide a substantial fraction of the heating power...
A joint Japan-EU R&D activity is in progress to optimize the accelerator for the ITER NBI. The accel...
The present ITER NB system includes two design features: short beamline design and vacuum insulated ...
International audienceIn parallel to the developments dedicated to the ITER neutral beam system, CEA...
Commercial viability of thermonuclear fusion power plants depends also on minimizing the recirculati...
A common problem of the multi-beamlet, negative-ion based Heating Neutral Beam (HNB) Injectors prese...
The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion c...
NIO1 is a compact source of negative ions jointly developed by RFX and INFN, to study the physics of...
For the experimental fusion reactor ITER, which should show the feasibility of sustaining a fusion p...
DEMO(DEMOnstration Fusion Power Plant) is a proposed nuclear fusion power plant that is intended to ...
The NIO1 experiment is a compact and modular negative ion source built at Consorzio RFX, Padua, with...
International audienceAchievement of an economic fusion reactor imposes a high level of unprecedente...
Abstract. To meet the requirements of the four operating and one start-up scenarios foreseen in the ...
Neutral Beam Injectors (NBIs), which need to be strongly optimized in the perspective of DEMO reacto...
Two Neutral Beam Injectors (NBI) are foreseen to provide a substantial fraction of the heating power...
A joint Japan-EU R&D activity is in progress to optimize the accelerator for the ITER NBI. The accel...
The present ITER NB system includes two design features: short beamline design and vacuum insulated ...
International audienceIn parallel to the developments dedicated to the ITER neutral beam system, CEA...