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Modern Physics  2023, Vol. 35 Issue (S1): 200-204    DOI:
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. [J]. Modern Physics, 2023, 35(S1): 200-204.
 
[1] 高能同步辐射光源初步设计报告》, 2019年1月.
[2] Haitao Yang et al.,The crystal structures of severe acute respiratory syndrome virus main protease and its complex with an inhibitor, PNAS, 100(23), 13190-13195, 2003.
[3] Zhenfeng Liu et al. Crystal structure of spinach major light-harvesting complex at 2.72Å resolution. Nature, 428, 287-292, 2004.
[4] Zhang, X. W. et al. Arsenic trioxide controls the fate of the PML-RARα oncoprotein by directly binding PML. Science, 328(2010) 240-243.
[5] Juan Liu et al., Metal-free efficient photocatalyst for stable visible water splitting via a two-electron pathway. Science, 2015:Vol. 347(no. 6225), 970-974.
[6] 丁大钊、方守贤、冼鼎昌,《关于在北京建设第三代同步辐射光源的建议》, 1993年.
[7] 参见上海光源网站http://www.ssrf.ac.cn/
[8] 高能同步辐射光源验证装置建设总结报告》, IHEP-HEPSTFP0-TR-2018-005, 2018年11月.
[9] P. Raimondi, et al., ESRF Upgrade Phase II, Third DLSR Workshop at SLAC, CA, USA (December 2013).
[10] Tetsuya Ishikawa, SPring- 8 Upgrade Plan from SP8 to SP8II, Third DLSR Workshop at SLAC, CA, USA (December 2013).
[11] A MBA Lattice at the APS:A New Generation, A Preliminary Report on the October 2013 Workshop on New Science Opportunities Provided by a Multibend Achromat Lattice at the APS, http://www.aps.anl.gov/Upgrade/Workshops/2013/MBA-Technology/.
[12] 北京先进光源工程地质可行性研究勘察报告, 中国科学院地质与地球物理研究所, 2011年11月.
[13] 北京先进光源场地微振动测试报告, 北京市勘察设计研究院有限公司, 2012年7月.
[14] 北京高能同步辐射光源项目场地北京环境微振动测试报告, 中国电子工程设计院, 2016.12, 北京.
[15] Fang Yan et. al, The design and prototype test for the tunnel foundation of high energy photon source, MEDSI2020 proceedings, July 26-29, 2022 Virtual format.
[16] 北京高能同步辐射光源(HEPS)地基基础设计方案微振动复核报告, 同济大学, 2020年7月.
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