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Beam-induced wakefield observation in X -band choke-mode cavities

机译:X波段扼流模腔中的束致尾流观测

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摘要

The X-band choke-mode structure is currently being studied as an alternative design for the accelerating structure of the compact linear collider (CLIC) main linac. The geometry of the choke-mode structure is designed to ensure the strong suppression of the beam-induced long-range transverse wakefield and therefore maintain the stability and quality of the beam in the CLIC main linac. Experiments conducted at the Argonne Wakefield Accelerator Facility are presented in this study to verify the design of the wakefield suppressor. The beam-induced radio frequency (rf) signals in a three-cell choke-mode structure were measured, and measured results show good agreement with the simulation results. The measured results also show strong damping in high-order dipolar modes with a quality factor Q of 10 to 20. The difference between the frequencies of the first and second dipole modes is about 3 GHz, which validates the special design of the cancelling dipole modes at the time of the succeeding bunch (0.5 ns).
机译:目前正在研究X波段扼流模结构,作为紧凑线性对撞机(CLIC)主直线加速器加速结构的替代设计。扼流模式结构的几何形状旨在确保强烈抑制光束引起的远程横向尾波场,从而在CLIC主直线加速器中保持光束的稳定性和质量。本研究介绍了在Argonne Wakefield加速器设施中进行的实验,以验证尾流抑制器的设计。测量了三单元扼流模式结构中的束感应射频(rf)信号,测量结果与仿真结果吻合良好。测量结果还显示出在高阶偶极模式下的强阻尼,品质因数Q为10至20.第一和第二偶极模式的频率差约为3 GHz,这证明了抵消偶极模式的特殊设计在下一组(0.5ns)的时间。

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