The use of caesium vapour is mandatory in plasma sources for negative ion beams to achieve a sufficient negative ion density. In the SPIDER ion source, three caesium ovens will provide a sufficiently high caesium flux to the walls of the ion source, but also a relatively even caesium distribution in the ion source volume. In order to qualify the caesium ovens in terms of repeatability of the evaporated caesium flow, and to characterize the caesium flux emitted from its nozzle, a set of diagnostics was installed in the small test facility CAesium Test Facility (CATS). This paper reports on the present configuration of the diagnostic set-up. Surface ionization probes are installed in front of the nozzle apertures. Movable surface ionization detectors are used to reconstruct the angular distribution of the emission. A quartz microbalance is installed at a fixed position, to provide the cumulated caesium over time. Finally, the laser absorption spectroscopy measures the line-integrated caesium density. An example of combined measurement is presented.

Diagnostics of Caesium emission from SPIDER caesium oven prototype

Barbisan M;Fadone M;Ghiraldelli R;Pasqualotto R;Serianni G
2018

Abstract

The use of caesium vapour is mandatory in plasma sources for negative ion beams to achieve a sufficient negative ion density. In the SPIDER ion source, three caesium ovens will provide a sufficiently high caesium flux to the walls of the ion source, but also a relatively even caesium distribution in the ion source volume. In order to qualify the caesium ovens in terms of repeatability of the evaporated caesium flow, and to characterize the caesium flux emitted from its nozzle, a set of diagnostics was installed in the small test facility CAesium Test Facility (CATS). This paper reports on the present configuration of the diagnostic set-up. Surface ionization probes are installed in front of the nozzle apertures. Movable surface ionization detectors are used to reconstruct the angular distribution of the emission. A quartz microbalance is installed at a fixed position, to provide the cumulated caesium over time. Finally, the laser absorption spectroscopy measures the line-integrated caesium density. An example of combined measurement is presented.
2018
Istituto gas ionizzati - IGI - Sede Padova
Inglese
6th International Symposium on Negative Ions, Beams and Sources, NIBS 2018
The 6th International symposium on Negative Ions, Beams and Sources (NIBS 2018)
2052
040011-1
040011-8
8
9780735417809
https://aip.scitation.org/doi/abs/10.1063/1.5083745
3-7 September 2018
Novosibirsk, Russia
SPIDER
Article Number: 040011 / E-ISSN: 1551-7616 / The work leading to this publication has been partially funded from Fusion for Energy.
11
restricted
Sartori, E; Barbisan, M; Fadone, M; Gorno, Sda; Bizzotto, L; Veltri, P; Laterza, B; Ghiraldelli, R; Rizzolo, A; Pasqualotto, R; Serianni, G
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
   EU Fusion for ITER Applications
   EUFORIA
   FP7
   211804
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/353104
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