Abstract
A new regime in radiofrequency (rf) breakdown, named the breakdown insensitive acceleration regime (BIAR), was observed in an 11.7 GHz metamaterial structure for wakefield acceleration driven by rf pulses with a duration of a few nanoseconds. In the BIAR, rf breakdown occurs without interrupting potential beam acceleration, resulting in greater resilience to breakdown. We have investigated the possibility that BIAR can support higher gradients by characterizing the breakdown in a high-power test. The peak gradient reached 190 MV/m when the structure was powered by 6 ns long rf pulses with 115 MW peak power. The short rf pulses were extracted from 65 MeV electron bunch trains with a total charge of up to 210 nC. This work has revealed the benefits of short-pulse acceleration by characterizing rf breakdown in the previously unexplored parameter space.
Cite
CITATION STYLE
Merenich, D., Leung, B., Rijal, G., Lu, X., Doran, S., Chen, G., … Wisniewski, E. (2024). Breakdown insensitive acceleration regime in a metamaterial accelerating structure. Physical Review Accelerators and Beams, 27(4). https://doi.org/10.1103/PhysRevAccelBeams.27.041301
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