首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >The mechanical design, fabrication and tests of a 166.6 MHz quarter-wave beta=1 proof-of-principle superconducting cavity for HEPS
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The mechanical design, fabrication and tests of a 166.6 MHz quarter-wave beta=1 proof-of-principle superconducting cavity for HEPS

机译:用于HEPS的166.6 MHz四分之一波beta = 1原理证明超导腔的机械设计,制造和测试

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摘要

A low-frequency quarter-wave superconducting beta = 1 structure has been proposed as a main accelerating cavity for the newly planned storage ring light source with ultra-low emittance. In the development of High Energy Photon Source, a 6 GeV diffraction-limited light source at the Institute of High Energy Physics, a compact 166.6 MHz proof-of-principle cavity was designed. By optimizing its geometry, the cavity's mechanical properties have been significantly improved with a focus on stress, pressure sensitivity, Lorentz-force detuning, microphonics and tuning capabilities. The cavity was later fabricated, post-processed and tested in a vertical manner at cryogenic temperatures. High peak electromagnetic fields have been achieved with an excellent cryogenic performance, largely exceeding the design goal and project specifications. In addition, the measured mechanical parameters are in good accordance with simulation results. Small Lorentz coefficients and low pressure sensitivities were measured during the tests. This constitutes the first demonstration of a solid low-frequency beta = 1 superconducting cavity design with compact geometry and favorable mechanical properties.
机译:已经提出了一种低频四分之一波超导β= 1结构,作为新计划的超低发射率的环形存储光源的主要加速腔。在高能物理研究所的高能光子源(6 GeV衍射限制光源)的开发中,设计了紧凑的166.6 MHz原理证明腔。通过优化其几何形状,腔体的机械性能得到了显着改善,重点在于应力,压力敏感性,洛伦兹力失谐,微音学和调谐功能。后来,在低温条件下对型腔进行了制造,后处理和垂直测试。高峰值电磁场具有出色的低温性能,大大超出了设计目标和项目规格。此外,测得的机械参数与仿真结果非常吻合。在测试期间测量了小的Lorentz系数和低压灵敏度。这是具有紧凑的几何形状和良好的机械性能的固态低频β= 1超导腔设计的首次展示。

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