2021年毕业于中国科学院上海应用物理研究所,主要从事粒子加速器射频结构相关研究,长期参与上海光源、上海软X射线自由电子激光等国家重大科技基础设施的建设与运行维护,在国内外学术期刊及会议发表多篇高水平论文。研究方向包括光阴极注入器、高梯度加速结构及常温连续波射频结构的研制,在电子直线加速器与同步辐射加速器等领域开展了系统性的前沿探索。
1. 加速器物理
2. 微波高频技术
中国粒子加速器学会希望杯 优秀奖 (2024)
国家自然科学基金青年项目,“冷态加速结构中的关键问题研究“,项目负责人,2025-2027
1. 文章:
[1] Wang, C., Tan, JH., Su, DH. et al. Design and low-power test of an HOM-damped normal-conducting cavity for WALS. NUCL SCI TECH 36, 110 (2025). https://doi.org/10.1007/s41365-025-01672-w
[2] Cheng Wang et al 2024 J. Phys.: Conf. Ser. 2687 032036
[3] Wang, C., Tan, JH., Huang, XX. et al. Design optimization and cold RF test of a 2.6-cell cryogenic RF gun. NUCL SCI TECH 32, 97 (2021). https://doi.org/10.1007/s41365-021-00925-8
[4] Cheng Wang, Jianhao Tan, Zihan Zhu, Xiaoxia Huang, Lin Wang, Wencheng Fang, Zhentang Zhao, Design and low-power RF test of a C-band cryogenic RF gun, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, Volume 1010, 2021, 165488
[5] Wang, C., Zhu, ZH., Jiang, ZG. et al. Design of a 162.5 MHz continuous-wave normal-conducting radiofrequency electron gun. NUCL SCI TECH 31, 110 (2020). https://doi.org/10.1007/s41365-020-00817-3
[6] Su, D., Fang, W., Wang, C., et al. Novel rf design of bimodal normal-conducting active rf cavity for synchrotron radiation light sources, Phys. Rev. Accel. Beams 29, 042001 (2026). DOI: https://doi.org/10.1103/m77b-mkm4
[7] Tian, JH., Wang, C., Fang, WC. et al. Design of a cryogenic photocathode gun with a novel TM02 mode coupler for low emittance. NUCL SCI TECH 36, 200 (2025). https://doi.org/10.1007/s41365-025-01744-x
[8] Tan, J., Fang, W., Huang, X. et al. The application of normal conducting high gradient technology on the SXFEL. Eur. Phys. J. Spec. Top. (2025). https://doi.org/10.1140/epjs/s11734-025-01825-3
[9] Liu Kui, Wang Cheng, Huang Yuxuan, et al. Digital low-level radio frequency system and cavity simulator for 1.3 GHz continuous-wave superconducting radio-frequency cavity. High Power Laser and Particle Beams, 2024, 36: 084005. doi: 10.11884/HPLPB202436.230325
[10] H.Gong, W. Fang, J. Tan, Z. Gao, C. Wang, et al, Fabrication, measurement, and tuning of the two-mode transverse deflecting structure, Phys. Rev. Accel. Beams 27, 042001 (2024). DOI: https://doi.org/10.1103/PhysRevAccelBeams.28.042001
[11] Gong, H. and Fang, W. and Tan, J. et al, Design of a dual-mode transverse deflecting structure using neural network and multiobjective algorithms, Phys. Rev. Accel. Beams 27, 042001 (2024). DOI: https://doi.org/10.1103/PhysRevAccelBeams.27.042001
[12] Dinghui Su et al 2024 J. Phys.: Conf. Ser. 2687 082002
[13] Z Gao et al 2024 J. Phys.: Conf. Ser. 2687 022019
[14] Yang, YQ., Fang, WC., Huang, XX. et al. Static superconducting gantry-based proton CT combined with X-ray CT as prior image for FLASH proton therapy. NUCL SCI TECH 34, 11 (2023). https://doi.org/10.1007/s41365-022-01163-2
[15] Gao, ZH., Wang, C., Fang, WC. et al. Study and design of cryogenic accelerating structure and RF optimization of single cell for SXFEL energy upgrading. Radiat Detect Technol Methods 6, 367–374 (2022). https://doi.org/10.1007/s41605-022-00341-5
[16] Lin Wang, Wencheng Fang, Jianhao Tan, Xiaoxia Huang, Wei Zhang, Cheng Wang, Zhentang Zhao,Design, fabrication and cold-test results of a 3.6 cell C-band photocathode RF gun for SXFEL,
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment,Volume 1003,2021,165320
[17] Liu, K., Li, L., Wang, C. et al. Multi-port cavity model and low-level RF systems design for VHF gun. NUCL SCI TECH 31, 8 (2020). https://doi.org/10.1007/s41365-019-0711-2
[18] 高子和,谭建豪,王程,等. SXFEL与SHINE高功率X波段干负载研制[J]. 核技术,2024,47(9):62-68. DOI:10.11889/j.0253-3219.2024.hjs.47.090206.
[19] 肖诚成,张强,王程,等.武汉光源高频系统中P波段160 kW连续波环行器的研制[J].核技术,2025,48(01):45-52.

