activity
20192022
most citedBeam characterization by means of emission spectroscopy in the ELISE test facility

20 citations · 28 across the 4 of their papers we have counts for

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Showing physics.plasm-phShow all

7 papers · 1 filter

physics.plasm-ph20221 cited

Numerical study of RF power coupling in fusion-relevant single- and multi-driver H ion sources

Dominikus Zielke, Stefan Briefi, Ursel Fantz

ITER's large and powerful neutral beam injection system is based on an ion source utilizing a modular concept, where eight cylindrical drivers are attached to one common expansion…

physics.plasm-ph20222 cited

Influence of the magnetic filter field topology on the beam divergence at the ELISE test facility

M. Barbisan, U. Fantz, D. Wünderlich

The ELISE test facility hosts a RF negative ion source, equipped with an extraction system which should deliver half the current foreseen for the ITER Neutral Beam Injector, keepin…

physics.plasm-ph202220 cited

Beam characterization by means of emission spectroscopy in the ELISE test facility

M. Barbisan, F. Bonomo, U. Fantz +1

The ELISE test facility at IPP Garching hosts a RF H-/D- ion source and an acceleration system. Its target is to demonstrate the performance foreseen for the ITER NBI system in ter…

physics.plasm-ph20225 cited

First hydrogen operation of NIO1: characterization of the source plasma by means of an optical emission spectroscopy diagnostic

M. Barbisan, C. Baltador, B. Zaniol +6

NIO1 is a compact and flexible radiofrequency H- ion source, developed by Consorzio RFX and INFN-LNL. Aim of the experimentation on NIO1 is the optimization of both the production…

physics.plasm-ph2020

A novel hydrogenic spectroscopic technique for inferring the role of plasma-molecule interaction on power and particle balance during detached conditions

K Verhaegh, B Lipschultz, C Bowman +13

Detachment, an important mechanism for reducing target heat deposition, is achieved through reductions in power, particle and momentum; which are induced through plasma-atom and pl…

physics.plasm-ph2019

Performance analysis of a 2.45 GHz microwave plasma torch for CO decomposition in gas swirl configuration

F. A. D'Isa, E. A. D. Carbone, A. Hecimovic +1

Microwave plasmas are a promising technology for energy-efficient CO valorization via conversion of CO into CO and O using renewable energies. A 2.45 GHz microwave…