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高能同步辐射光源增强器同步光引出系统的研制

Development of the Synchrotron Radiation Extraction System for the High Energy Photon Source (HEPS) Booster

  • 摘要: 为计算高能同步辐射光源(HEPS)增强器高能束流的发射度和能散等参数,需通过引出系统将束线内的同步辐射光引出。本文研究了同步光引出系统各部件组成、各部件的加工制造及检测技术,研制了引出系统的核心部件高精度反光镜。镜面钎焊前表面粗糙度为0.53~0.94 nm,面型精度27.9~63 nm,钎焊后表面粗糙度为0.625~0.977 nm,面型精度58~95 nm。引出系统真空腔体经超高真空烘烤后,内部极限真空度达9.1×10−8 Pa,真空漏率8.7×10−12 Pa·m3/s,且实现超高真空贮存。

     

    Abstract: To calculate parameters such as the emittance and energy spread of the high-energy beam in the High Energy Photon Source (HEPS) booster, it is necessary to extract the synchrotron radiation from the beamline through an extraction system. This paper studies the components of the synchrotron radiation extraction system, the manufacturing and testing technologies of each component, and develops the core component of the extraction system, a high-precision mirror. The mirror surface had a roughness of 0.53–0.94 nm and shape accuracy of 27.9–63 nm before brazing, and after brazing, the surface roughness was 0.625–0.977 nm with a shape accuracy of 58–95 nm. After baking the ultra-high vacuum chamber of the extraction system, the internal ultimate vacuum reached 9.1×10−8 Pa, the vacuum leak rate was 8.7×10−12 Pa·m3/s, and ultra-high vacuum storage was achieved.

     

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