Cavity Production and Testing of the First C75 Cryomodule for CEBAF

G. Ciovati, G. Cheng, E. Daly, G. Davi, M. Drury, J. Fischer, D. Forehand, K. Macha, F. Marhauser, E. McEwen, A. Mitchell, A. Reilly, R. Rimmer, S. Wang
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引用次数: 2

Abstract

The CEBAF cryomodule rework program was updated over the last few years to increase the energy gain of refur-bished cryomodules to 75 MeV. The concept recycles the waveguide end-groups from original CEBAF cavities fabricated in the 1990s and replaces the five elliptical cells in each with a new optimized cell shape fabricated from large-grain, ingot Nb material. Eight cavities were fabricated at Research Instruments, Germany, and two cavities were built at Jefferson Lab. Each cavity was processed by electropolishing and tested at 2.07 K. The best eight cavities were assembled into “cavity pairs” and re-tested at 2.07 K, before assembly into the cryomodule. All but one cavity in the cryomodule were within 10% of the target accelerating gradient of 19 MV/m with a quality factor of 8×10 9 . The performance limitations were field emission and multipacting.
首个用于CEBAF的C75低温模块的空腔生产和测试
CEBAF低温模块返工计划在过去几年中进行了更新,以将返修的低温模块的能量增益提高到75兆电子伏特。该概念回收了20世纪90年代制造的原始CEBAF腔中的波导端群,并将每个腔中的五个椭圆细胞替换为由大晶粒铸锭Nb材料制成的新优化细胞形状。在德国的研究仪器公司制造了8个空腔,在杰斐逊实验室制造了2个空腔。每个空腔都经过电抛光处理,并在2.07 K下进行测试。将最佳的8个空腔组装成“空腔对”,并在2.07 K下重新测试,然后组装到低温模块中。除1个空腔外,其余空腔均在目标加速梯度19 MV/m的10%以内,质量因子为8×10 9。性能限制是场发射和多冲击。
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