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Development of a set of movable electrostatic probes to characterize the plasma in the ITER neutral beam negative-ion source prototype

Academic Article
Publication Date:
2021
abstract:
We present the development and first use of a set of movable electrostatic probes on the full-scale ITER heating neutral beam prototype negative-ion source SPIDER. The probes access the ion source plasma from the multi-aperture accelerator aiming at the study of the plasma formation and expansion from the RF drivers through the transverse magnetic filter. The magnetic filter separates the relatively high electron-temperature region for plasma formation and hydrogen dissociation form the negative-ion extraction region in which low electron-temperature is required to avoid negative-ion destruction, but also causes non-uniformities and drifts in the large plasma discharge which will be studied by this setup. The set of electrostatic probes encompasses eight RF-compensated Langmuir probes, one double probe, one Mach probe for the assessment of plasma drift velocities, and two gridded retarding field energy analyzers to measure the positive-ion energy distribution function. Electric aspects as well as mechanical constraints given by the large in-vacuum movable structure, and thermal requirements of these relatively heat-flux components made the design challenging. Prototyping and commissioning of the measurement system is discussed offering examples of measured characteristics with the various probes.
Iris type:
01.01 Articolo in rivista
Keywords:
Electrostatic probes; Beam sources; Negative ions; ITER heating neutral beam injector
List of contributors:
Cervaro, Vannino; Taliercio, Cesare; Serianni, Gianluigi; Grando, Luca; Spolaore, Monica; Zuin, Matteo; Brombin, Matteo; DEGLI AGOSTINI, Fabio
Authors of the University:
BROMBIN MATTEO
DEGLI AGOSTINI FABIO
GRANDO LUCA
SERIANNI GIANLUIGI
SPOLAORE MONICA
TALIERCIO CESARE
ZUIN MATTEO
Handle:
https://iris.cnr.it/handle/20.500.14243/397138
Published in:
FUSION ENGINEERING AND DESIGN
Journal
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URL

https://www.sciencedirect.com/science/article/abs/pii/S0920379621002003
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