|
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presented at the 22st International Conference on RF Superconductivity (SRF'25), Tokyo, Japan, Sep. 2025, paper MOP52, unpublished.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presented at the 22st International Conference on RF Superconductivity (SRF'25), Tokyo, Japan, Sep. 2025, paper THP54, unpublished. |