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[n] K. Ko et al., “Design of a High-Power Test Model of the PEP-II RF Cavity”, in Proc. PAC'93, Washington D.C., USA, Mar. 1993, pp. 1039-1042.
[n] M. Ge et al., “High-gradient SRF Cavity R&D at Cornell University”, in Proc. IPAC'19, Melbourne, Australia, May 2019, pp. 3017-3019. doi:10.18429/JACoW-IPAC2019-WEPRB087
[n] C. Leon, E.-C. Huang, A. Scheinker, and P. M. Anisimov, “Integrating simulation and machine learning for Proton Storage Ring beam analysis”, in Proc. NAPAC'25, Sacramento, California, USA, Aug. 2025, pp. 196-199. doi:10.18429/JACoW-NAPAC2025-MOP065
[n] S. Casalbuoni et al., “Towards a Superconducting Undulator Afterburner for the European XFEL”, in Proc. IPAC'21, Campinas, Brazil, May 2021, pp. 2921-2924. doi:10.18429/JACoW-IPAC2021-WEPAB132
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References
- K. Ko et al., “Design of a High-Power Test Model of the PEP-II RF Cavity”, in Proc. 15th Particle Accelerator Conf. (PAC'93), Washington D.C., USA, Mar. 1993, pp. 1039-1042.
- M. Ge et al., “High-gradient SRF Cavity R&D at Cornell University”, in Proc. 10th Int. Particle Accelerator Conf. (IPAC'19), Melbourne, Australia, May 2019, pp. 3017-3019.
- C. Leon, E.-C. Huang, A. Scheinker, and P. M. Anisimov, “Integrating simulation and machine learning for Proton Storage Ring beam analysis”, in Proc. 6th North American Particle Accelerator Conference (NAPAC'25), Sacramento, California, USA, Aug. 2025, pp. 196-199.
- S. Casalbuoni et al., “Towards a Superconducting Undulator Afterburner for the European XFEL”, in Proc. 12th Int. Particle Accelerator Conf. (IPAC'21), Campinas, Brazil, May 2021, pp. 2921-2924.
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