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17–22 Sept 2023
Victoria Conference Centre
Canada/Pacific timezone
Fairmont Empress (Conference Hotel): All reservations must be made by phone or email now. https://icis2023.triumf.ca/accommodations.html

Experiment of Highly Charged Ion Production by Changing the Microwave Injection Position at Compact ECR Ion Source

Not scheduled
20m
Victoria Conference Centre

Victoria Conference Centre

Poster (by default) Production of Highly charged Ion Beams Monday

Speaker

Ms Mana Miyagawa (Sumitomo Heavy Ibdustries,Ltd)

Description

Kei3 is a prototype of compact ECR ion source developed for various ion production at QST-NIRS. It has confirmed that Kei3 has an ability to produce highly charged heavy ion, for example, carbon, neon and argon, but the beam current was not high enough. To improve this situation, we optimized microwave frequency and injection position in the plasma chamber.
Microwave has a large effect to production of ion, the injection efficiency to ECR plasma is a key to obtain high current beam.
In this study, we measured Ar4+ beam current by moving the injection position 2mm step along beam axis from peak of axial magnetic field. We also measured it when microwave frequency was varied from 9.75 GHz to 10.00 GHz in 0.01 GHz step. Microwave was transmitted by coaxial cable, and it was injected through antenna. The dependence of microwave frequency and antenna position on beam current was measured in this experiment. Coaxial cable was set at r=18 mm to prevent damage due to heat input by the plasma.
The beam current was not observed at the start position, but it increased periodically along the injection position. The maximum beam current was 26.8 uA observed at microwave frequency of 9.84 GHz and 45 mm inner position of the peak of magnetic field. It was 1.8 times larger than 5 mm inner position of the peak. As a result, the injection position of microwave should at the inner position of peak of magnetic field for more efficient highly charged ion production.

Email Address mana.miyagawa@shi-g.com
I have read the Code of Conduct to attend ICIS2023. Yes

Primary author

Ms Mana Miyagawa (Sumitomo Heavy Ibdustries,Ltd)

Co-authors

Mr Kazuki Sakamoto (National Institute of Technology, Niihama College) Dr Toyohisa Asaji (National Institute of Technology, Niihama College) Dr Masayuki Muramatsu (National Institutes for Quantum Radiological Science and Technology, National Institute of Radiological Sciences)

Presentation materials

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