European effort to improve highly charged heavy ion beam capabilities with ECR ion sources (invited)
Koivisto, H., Andreev, A., Asfari, Z., Biri, S., Celona, L., Charbonnière, L., Charpentier, C., Dubois, M., Filliger, M., Galatà, A., Gall, B., Gallo C., S., Galonska, M., Gammino, S., Gerbershagen, A., Jones, B.N., Kalvas, T., Kremers, H.R., Kronholm, R., . . . Torrisi, G. (2024). European effort to improve highly charged heavy ion beam capabilities with ECR ion sources (invited). In 20th International Conference on Ion Sources, ICIS2023 (Article 012049). IOP Publishing. Journal of Physics : Conference Series, 2743. https://doi.org/10.1088/1742-6596/2743/1/012049
Julkaistu sarjassa
Journal of Physics : Conference SeriesPäivämäärä
2024Tekijänoikeudet
© 2024 the Authors
CUBE-ECRIS is a recently commissioned permanent magnet electron cyclotron resonance (ECR) ion source developed at the university of Jyväskylä accelerator laboratory. The special features of the new ion source design include an unconventional quadrupole minimum-B magnetic field structure and a slit beam extraction system necessitated by the line-shaped plasma loss fluxes. Gas mixing and double frequency operation are widely used methods to optimize high charge state ion production of conventional ECR ion sources. The work presented here demonstrates the applicability of these methods for boosting the high charge state beam currents of argon, krypton and xenon extracted from CUBE-ECRIS. Oxygen and helium were used as mixing gases and microwave frequencies between 10 and 11 GHz were used for single and double frequency operation. Gas mixing has a strong impact on the high charge state beam currents. For example, the highest observed charge state increased from 15+ to 19+ for krypton and from 16+ to 23+ for xenon with oxygen gas mixing. Double frequency operation provides an additional performance improvement, for example the currents of argon 9+ and 11+ beams, produced with gas mixing, increased 30% and 100% in double frequency operation at the same total power.
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Julkaisija
IOP PublishingKonferenssi
International Conference on Ion SourcesKuuluu julkaisuun
20th International Conference on Ion Sources, ICIS2023ISSN Hae Julkaisufoorumista
1742-6588Julkaisu tutkimustietojärjestelmässä
https://converis.jyu.fi/converis/portal/detail/Publication/216113596
Metadata
Näytä kaikki kuvailutiedotKokoelmat
Rahoittaja(t)
Euroopan komissioRahoitusohjelmat(t)
The content of the publication reflects only the author’s view. The funder is not responsible for any use that may be made of the information it contains.
Lisätietoja rahoituksesta
This work has received funding from the European Union’s Horizon Europe Research and Innovation programme under Grant Agreement No 101057511.Lisenssi
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