
doi: 10.1063/1.4932403
pmid: 26932077
handle: 20.500.14243/302267 , 20.500.14243/309959 , 2108/127641
doi: 10.1063/1.4932403
pmid: 26932077
handle: 20.500.14243/302267 , 20.500.14243/309959 , 2108/127641
NIO1 is a compact radio frequency ion source designed to generate a 60 kV-135 mA hydrogen negative ion beam and it aims at continuous operation, which implies a detailed thermo-mechanical analysis of the beam-facing components, in particular, the accelerator grids. A 3D analysis of the entire NIO1 beam has been performed for the first time with a fully 3D version of EAMCC, a relativistic particle tracking code for the calculation of the grid power deposition induced by particle impacts. According to the results presented in this paper, secondary and co-extracted electrons cause a non-negligible heat load on the grids, where different high-power density regions, within reasonable sustainable standard limits, are calculated.
Continuous operation, Radio-frequency ion sources, Particle impact, Thermo-mechanical analysis, Particle transport, Relativistic particles, -, Negative ions, Thermal load, Settore FIS/01 - FISICA SPERIMENTALE, High power density, Electric power transmission networks, Ion beams, Ion sources, Co-extracted electrons
Continuous operation, Radio-frequency ion sources, Particle impact, Thermo-mechanical analysis, Particle transport, Relativistic particles, -, Negative ions, Thermal load, Settore FIS/01 - FISICA SPERIMENTALE, High power density, Electric power transmission networks, Ion beams, Ion sources, Co-extracted electrons
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