Powerful neutral beam injectors (NBI) are required as heating and current drive systems for tokamaks like ITER. The developement of negative ion sources and accelerators (40A; 1MeV D - beam) in particular, is a crucial point and many issues still require a better understanding. In this framework, the experiment NIO1 (9 beamlets of 15 mA H- each, 60 kV) operated at Consorzio RFX has started operation in 2014 [1]. Both its RF negative ion source (up to 2.5kW) and its beamline are equipped with many diagnostics Error! Reference source not found.. For the early tests on the extraction system, oxygen has been used as well as hydrogen due to its higher electronegativity, which allows reaching currents large enough to test also the beam diagnostics even without caesium injection. In particular a 1D-CFC tile is used as a calorimeter to determine the beam power deposition by observing the rear surface of the tile with an IR camera; the same design is applied as for STRIKE [3], one of the diagnostics of SPIDER, the ITER-like ion source prototype [4], whose facility is currently under construction at Consorzio RFX. From this diagnostic it is possible to assess also the beam divergence and thus the beam optics. The present contribution describes the characterization of NIO1 particle beam by means of temperature and current measurements with different source and acceleration parameters.

A first characterization of NIO1 particle beam by means of a diagnostic calorimeter

Cervaro V;Serianni G;
2016

Abstract

Powerful neutral beam injectors (NBI) are required as heating and current drive systems for tokamaks like ITER. The developement of negative ion sources and accelerators (40A; 1MeV D - beam) in particular, is a crucial point and many issues still require a better understanding. In this framework, the experiment NIO1 (9 beamlets of 15 mA H- each, 60 kV) operated at Consorzio RFX has started operation in 2014 [1]. Both its RF negative ion source (up to 2.5kW) and its beamline are equipped with many diagnostics Error! Reference source not found.. For the early tests on the extraction system, oxygen has been used as well as hydrogen due to its higher electronegativity, which allows reaching currents large enough to test also the beam diagnostics even without caesium injection. In particular a 1D-CFC tile is used as a calorimeter to determine the beam power deposition by observing the rear surface of the tile with an IR camera; the same design is applied as for STRIKE [3], one of the diagnostics of SPIDER, the ITER-like ion source prototype [4], whose facility is currently under construction at Consorzio RFX. From this diagnostic it is possible to assess also the beam divergence and thus the beam optics. The present contribution describes the characterization of NIO1 particle beam by means of temperature and current measurements with different source and acceleration parameters.
2016
Istituto gas ionizzati - IGI - Sede Padova
Inglese
The 5th International Symposium on Negative Ions, Beams and Sources - NIBS 2016
http://nibs2016.org/sites/nibs2016.org/files/NIBS16%20Book%20Of%20Abstracts.pdf
12-15 September 2016
Oxford, UK
NIO1
diagnostic calorimeter
7
info:eu-repo/semantics/conferenceObject
none
274
04 Contributo in convegno::04.02 Abstract in Atti di convegno
Pimazzoni, A; Cavenago, M; Cervaro, V; Fasolo, D; Serianni, G; Tollin, M; Veltri, P
   EU Fusion for ITER Applications
   EUFORIA
   FP7
   211804

   Implementation of activities described in the Roadmap to Fusion during Horizon 2020 through a Joint programme of the members of the EUROfusion consortium
   EUROfusion
   H2020
   633053
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/333633
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