用于射频分离Kaon束流的3.9 GHz横模超导腔的工程、设计和原型测试

M. Champion, L. Bellantoni, T. Berenc, C. Deibele, H. Edwards, M. Foley, J. Fuerst, M. Kuchnir, A. Rowe
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引用次数: 2

摘要

一项研究和开发计划正在进行中,以建造超导腔,用于费米实验室的卡介子束的射频分离。该设计要求安装12个13单元腔,工作在3.9 GHz横向模式下,偏转梯度为5 MV/m。我们介绍了腔体、低温模块、射频功率耦合器、冷调谐器和配套硬件的机械、低温和真空设计。腔体的电磁设计在Wanzenberg和mccashan(2001)的配套论文中提出。将介绍热调谐系统(用于现场平整度)和垂直测试系统,以及台架测量和单单元和五单元原型的冷测试结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Engineering, design and prototype tests of a 3.9 GHz transverse-mode superconducting cavity for a radiofrequency-separated Kaon beam
A research and development program is underway to construct superconducting cavities to be used for radiofrequency separation of a kaon beam at Fermilab. The design calls for installation of twelve 13-cell cavities operating in the 3.9 GHz transverse mode with a deflection gradient of 5 MV/m. We present the mechanical, cryogenic and vacuum design of the cavity, cryomodule, rf power coupler, cold tuner and supporting hardware. The electromagnetic design of the cavity is presented in a companion paper by Wanzenberg and McAshan (2001). The warm tuning system (for field flatness) and the vertical test system will be presented along with test results of bench measurements and cold tests on single-cell and five-cell prototypes.
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