Multipacting in a coaxial coupler with bias voltage for SRF operation with a large beam current

A superconducting radio-frequency (SRF) module is commonly used for a high-energy accelerator; its purpose is to provide energy to the particle beam. Because of the low power dissipation and smaller impedance of a higher-order mode for this module, it can provide more power to the particle beam with...

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Veröffentlicht in:Journal of instrumentation 2016-09, Vol.11 (9), p.P09015-P09015
Hauptverfasser: Liu, Z.-K., Wang, Ch, Chang, F.-Y., Chang, L.-H., Chang, M.-H., Chen, L.-J., Chung, F.-T., Lin, M.-C., Lo, C.-H., Tsai, C.-L., Tsai, M.-H., Yeh, M.-S., Yu, T.-C.
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Sprache:eng
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Zusammenfassung:A superconducting radio-frequency (SRF) module is commonly used for a high-energy accelerator; its purpose is to provide energy to the particle beam. Because of the low power dissipation and smaller impedance of a higher-order mode for this module, it can provide more power to the particle beam with better stability through decreasing the couple bunch instability. A RF coupler is necessary to transfer the high power from a RF generator to the cavity. A coupler of coaxial type is a common choice. With high-power operation, it might suffer from multipacting, which is a resonance phenomenon due to re-emission of secondary electrons. Applying a bias voltage between inner and outer conductors of the coaxial coupler might increase or decrease the strength of the multipacting effect. We studied the effect of a bias voltage on multipacting using numerical simulation to track the motion of the electrons. The simulation results and an application for SRF operation with a large beam current are presented in this paper.
ISSN:1748-0221
1748-0221
DOI:10.1088/1748-0221/11/09/P09015