Abstract
The performance of the INS 25.5-MHz split coaxial RFQ has been clarified through high-power and acceleration tests. The cavity operates stably at a duty factor of 20% and a peak power of 80 kW, generating an intervane voltage of 109.3 kV, the design value for ions with a charge-to-mass ratio of 1/30. Acceleration tests have been conducted to study the performance of the vanes machined by means of the two-dimensionally cutting technique. The results show that the A{sub 10} coefficient of the electric field will be close to the one calculated by Crandall, and that the field in the radial matching section might be different from the designed one. (author).
Citation Formats
Tokuda, N, Arai, S, Imanishi, A, Morimoto, T, Shibuya, S, and Tojyo, E.
Performance characteristics of the INS 25.5-MHz split coaxial RFQ.
Japan: N. p.,
1992.
Web.
Tokuda, N, Arai, S, Imanishi, A, Morimoto, T, Shibuya, S, & Tojyo, E.
Performance characteristics of the INS 25.5-MHz split coaxial RFQ.
Japan.
Tokuda, N, Arai, S, Imanishi, A, Morimoto, T, Shibuya, S, and Tojyo, E.
1992.
"Performance characteristics of the INS 25.5-MHz split coaxial RFQ."
Japan.
@misc{etde_10111120,
title = {Performance characteristics of the INS 25.5-MHz split coaxial RFQ}
author = {Tokuda, N, Arai, S, Imanishi, A, Morimoto, T, Shibuya, S, and Tojyo, E}
abstractNote = {The performance of the INS 25.5-MHz split coaxial RFQ has been clarified through high-power and acceleration tests. The cavity operates stably at a duty factor of 20% and a peak power of 80 kW, generating an intervane voltage of 109.3 kV, the design value for ions with a charge-to-mass ratio of 1/30. Acceleration tests have been conducted to study the performance of the vanes machined by means of the two-dimensionally cutting technique. The results show that the A{sub 10} coefficient of the electric field will be close to the one calculated by Crandall, and that the field in the radial matching section might be different from the designed one. (author).}
place = {Japan}
year = {1992}
month = {Apr}
}
title = {Performance characteristics of the INS 25.5-MHz split coaxial RFQ}
author = {Tokuda, N, Arai, S, Imanishi, A, Morimoto, T, Shibuya, S, and Tojyo, E}
abstractNote = {The performance of the INS 25.5-MHz split coaxial RFQ has been clarified through high-power and acceleration tests. The cavity operates stably at a duty factor of 20% and a peak power of 80 kW, generating an intervane voltage of 109.3 kV, the design value for ions with a charge-to-mass ratio of 1/30. Acceleration tests have been conducted to study the performance of the vanes machined by means of the two-dimensionally cutting technique. The results show that the A{sub 10} coefficient of the electric field will be close to the one calculated by Crandall, and that the field in the radial matching section might be different from the designed one. (author).}
place = {Japan}
year = {1992}
month = {Apr}
}