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Author: J. Chen


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Reference
J. Chen, X. W. Du, M. H. Lin, Q. P. Wang, and Z. Wang, “Optimization of Thermal Deformation of a Horizontally Deflecting High-Heat-Load Mirror Based on eInGa Bath Cooling”, in Proc. MEDSI (MEDSI'23), Beijing, China, Nov. 2023, paper THPPP008, pp. 283-286.
Z. Wang, J. Chen, X. W. Du, D. Feng, and Q. P. Wang, “The Heat Load Calculation in the Grating-Based Beamline at Hefei Advanced Light Facility (HALF)”, in Proc. MEDSI (MEDSI'23), Beijing, China, Nov. 2023, paper THPPP009, pp. 287-289.
J. Chen et al., “Status of SRF activities for the SHINE project”, in Proc. 22st International Conference on RF Superconductivity (SRF'25), Tokyo, Japan, Sep. 2025, pp. 31-36.
X. Guo, H. Deng, J. Chen, S. Zhao, X. Wu, and X. Huang, “Electromagnetic-thermal coupling study of the SHINE injector cavity”, presented at the 22st International Conference on RF Superconductivity (SRF'25), Tokyo, Japan, Sep. 2025, paper MOP52, unpublished.
X. Guo et al., “RF and Mechanical Design of a 1.3 GHz 7-cell High-current Superconducting Cavity”, in Proc. 22st International Conference on RF Superconductivity (SRF'25), Tokyo, Japan, Sep. 2025, pp. 181-186.
X. Huang, X. Wu, J. Chen, D. Wang, and H. Deng, “HOM analysis of the 1.3 GHz 3-cell cavity for high-current beam acceleration”, in Proc. 22st International Conference on RF Superconductivity (SRF'25), Tokyo, Japan, Sep. 2025, pp. 189-193.
X. Pu et al., “Higher order modes couplers tuning optimization of 1.3 GHz 9 cell SRF cavities for SHINE project”, in Proc. 22st International Conference on RF Superconductivity (SRF'25), Tokyo, Japan, Sep. 2025, pp. 223-228.
Y. Zong et al., “Statistical analysis of field emission for SHINE project”, in Proc. 22st International Conference on RF Superconductivity (SRF'25), Tokyo, Japan, Sep. 2025, pp. 362-366.
X. Wu et al., “Development of 1.3 GHz 3-cell superconducting cavities for high-current application”, in Proc. 22st International Conference on RF Superconductivity (SRF'25), Tokyo, Japan, Sep. 2025, pp. 730-734.
X. Yuan et al., “Preliminary physics design of 1.3 GHz superconducting electron gun”, presented at the 22st International Conference on RF Superconductivity (SRF'25), Tokyo, Japan, Sep. 2025, paper THP54, unpublished.


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