陈锦芳,中国科学院上海高等研究院研究员、博导、超导射频组长。从事加速器超导高频技术和物理方面的研究。2007年于北京大学获学士学位,2013年于中国科学院高能物理研究所(国科大)获博士学位,2013~2017在意大利INFN-LASA做博士后。
1. 超导高频技术
2. 加速器物理
1. 明珠菁英人才, 市地级, 2023年度
1. 上海市重大专项“硬X射线自由电子激光关键技术研发及集成测试”,子课题负责人,2017.11-2023.12
2. 上海硬X射线自由电子激光装置(SHINE), 项目参与人, 国家任务, 2018.04--2027.04
[1] Zhejia XU, Jinfang CHEN*, Xiaowei WU et al., “Investigation of two-step baking technology for 3.9 GHz superconducting RF cavities”, NUCLEAR TECHNIQUES, vol. 49, no. 4, pp. 13, 2026.
[2] Zhen-Yu Ma, Meng Zhang, Jin-Fang Chen* et al., Development of 3.9 GHz fundamental power couplers for the XFEL third harmonic cryomodules, Physical Review Accelerators and Beams, 29, 043501 (2026).
[3] Jinfang Chen, Yue Zong, Xiaoyun Pu et al., “Performance and production status of the high-Q cryomodules for the SHINE project”, in Proc. IPAC'26, Deauville, France, 2026, pp.1860-1863.
[4] Zhaoxi Chen, Yue Zong, Zongkai Li et al., “Simultaneous Q0 and Eacc Enhancement in 1.3 GHz Niobium Cavities: Role of Carbon-Modulated Oxygen Segregation at the Atomic Scale", ACS Applied Materials & Interfaces, vol. 18, no. 2, pp. 4441-4456, 2026.
[5] Zheng Wang, Jinfang Chen*, Yue Zong et al., “Avoiding the Formation of Bubbles and Pits in Buffered Chemical Polishing for the Niobium Superconducting Cavity Through Adjusting the Acid Ratio”, Materials, vol. 18, no. 5, pp. 960, 2025.
[6] J.F. Chen, S.S. Cao, L.L. Gong, et al., Status of SRF activities for the SHINE project, in Proc. SRF2025, RIKEN, Tokyo, Japan, 2025, pp.31-35.
[7] Xuan Huang, Xiaowei Wu, Jinfang Chen* et al., “Fabrication and test of the 1.3 GHz 3-cell superconducting cavities for high-current application”, Nucl. Instrum. Meth. A, pp. 170910, 2025.
[8] Jin-Fang Chen, Yue Zong, Xiao-Yun Pu et al., "Ultra-high quality factor and ultra-high accelerating gradient achievements in a 1.3 GHz continuous wave cryomodule," Nuclear Science and Techniques, vol. 36, no. 2, pp. 25, 2025.
[9] Qixin Chen, Yue Zong, Zheng Wang et al., "First Results of Nb3Sn Coated Cavity by Vapor Diffusion Method at SARI," Coatings, vol. 14, no. 5, pp. 581, 2024.
[10] Zhaoxi Chen, Yue Zong, Yue Chai et al., "Unraveling the Nanoscale Segregation Mechanism in N-Doped Niobium for Enhanced SRF Performance," Small Methods, vol. 2301319, 2024.
[11] X. Wu, J. Chen*, J. Wu, et al., "Mass production of 3.9 GHz 9-cell cavities at SHINE", in Proc. IPAC'24, Nashville, TN, USA, 2024.
[12] J.F. Chen*, H.T. Hou, Z.Y. Ma, et al., "Cryomodules development for SHINE project", in Proc. IPAC'24, Nashville, TN, USA, 2024.
[13] J.F. Chen*, S. Xing, J. N. Wu, et al., "Design, construction and operation of a surface-treatment platform for SHINE superconducting cavities", in Proc. IPAC'24, Nashville, TN, USA, 2024.
[14] Y. Zong, J. F. Chen*, D. Wang et al., "Accelerating gradient improvement in nitrogen-doped superconducting radio-frequency cavities for SHINE," Nucl. Instrum. Meth. A, vol. 1057, pp. 168724, 2023.
[15] X.W. Wu, J.F. Chen*, P.C. Dong et al., "Development of 3.9 GHz 9-Cell Cavities at SHINE", in Proc. SRF2023, Grand Rapids, MI, USA, 2023.
[16] Zhen-Yu Ma, Jin-Fang Chen*, "Design optimization of 3.9 GHz fundamental power coupler for the SHINE project," Nuclear Science and Techniques, vol. 32, no. 132, 2021.
[17] Yu-Xin Zhang, Jin-Fang Chen*, and Dong Wang, "RF design optimization for the SHINE 3.9 GHz cavity," Nuclear Science and Techniques, vol. 31, no. 7, pp. 73, 2020.
2. 论著章节
[1] ******
3. 专利
[1] 一种超净间自动吹净装置,专利号:CN115365208 B,王岩、陈锦芳,发明专利
[2] 一种自动高压喷淋冲洗超导腔外表面的装置,专利号:ZL202322769601.6, 武佳妮、陈锦芳,实用新型
[3] 一种超导腔电化学抛光装置的机械系统,专利号: ZL202321869988.6,董鹏程、陈锦芳、蒋志强、武佳妮、宗玥,实用新型

