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[n] R. Risler et al., “25 Years of Continuous Operation of the Seattle Clinical Cyclotron Facility”, in Proc. Cyclotrons'10, Lanzhou, China, Sep. 2010, paper MOPCP011, pp. 66-68.
[n] A. Halavanau et al., “LCLS Multi-Bunch Improvement Plan: First Results”, in Proc. IPAC'22, Bangkok, Thailand, Jun. 2022, pp. 1092-1093. doi:10.18429/JACoW-IPAC2022-TUPOPT037
[n] G. Wang et al., “Complex bend prototype commissioning result”, in Proc. NAPAC'25, Sacramento, California, USA, Aug. 2025, pp. 981-985. doi:10.18429/JACoW-NAPAC2025-THP019
[n] E. V. Valetov, “Beamline Optimization Methods for High Intensity Muon Beams at PSI”, in Proc. NAPAC'22, Albuquerque, NM, USA, Aug. 2022, pp. 63-66. doi:10.18429/JACoW-NAPAC2022-MOPA08
[n] K. P. Harrig et al., “Ferrite Specification for the Mu2e 300 kHz and 4.4 MHz AC Dipole Magnets”, in Proc. IPAC'22, Bangkok, Thailand, Jun. 2022, pp. 2816-2818. doi:10.18429/JACoW-IPAC2022-THPOTK023
[n] M.-C. Lin, C. H. Lo, M.-R. Lu, and M.-K. Yeh, “Multi-physics Computation and Deformation Testing of a Shell-type 1.5-GHz Cavity”, in Proc. IPAC'19, Melbourne, Australia, May 2019, pp. 2968-2971. doi:10.18429/JACoW-IPAC2019-WEPRB065
[n] D. Schirmer, “A Machine Learning Approach to Electron Orbit Control at the 1.5 GeV Synchrotron Light Source DELTA”, in Proc. IPAC'22, Bangkok, Thailand, Jun. 2022, pp. 1137-1140. doi:10.18429/JACoW-IPAC2022-TUPOPT058
[n] C. Compton et al., “Superconducting Quarter-Wave Resonator Cavity and Cryomodule Development for a Heavy Ion Re-accelerator”, in Proc. LINAC'08, Victoria, Canada, Sep.-Oct. 2008, paper THP033, pp. 854-856.
[n] E. I. Simakov, S. Biedron, V. Gorelov, M. E. Middendorf, T. Tajima, and M. R. A. Zuboraj, “C-Band High Gradient Testing of the Benchmark a/?=0.105 Cavity”, in Proc. IPAC'22, Bangkok, Thailand, Jun. 2022, pp. 1564-1566. doi:10.18429/JACoW-IPAC2022-TUPOMS058
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References
- R. Risler et al., “25 Years of Continuous Operation of the Seattle Clinical Cyclotron Facility”, in Proc. 19th Int. Conf. on Cyclotrons and their Applications (Cyclotrons'10), Lanzhou, China, Sep. 2010, paper MOPCP011, pp. 66-68.
- A. Halavanau et al., “LCLS Multi-Bunch Improvement Plan: First Results”, in Proc. 13th Int. Particle Accelerator Conf. (IPAC'22), Bangkok, Thailand, Jun. 2022, pp. 1092-1093.
- G. Wang et al., “Complex bend prototype commissioning result”, in Proc. 6th North American Particle Accelerator Conference (NAPAC'25), Sacramento, California, USA, Aug. 2025, pp. 981-985.
- E. V. Valetov, “Beamline Optimization Methods for High Intensity Muon Beams at PSI”, in Proc. North American Particle Accelerator Conf. (NAPAC'22), Albuquerque, NM, USA, Aug. 2022, pp. 63-66.
- K. P. Harrig et al., “Ferrite Specification for the Mu2e 300 kHz and 4.4 MHz AC Dipole Magnets”, in Proc. 13th Int. Particle Accelerator Conf. (IPAC'22), Bangkok, Thailand, Jun. 2022, pp. 2816-2818.
- M.-C. Lin, C. H. Lo, M.-R. Lu, and M.-K. Yeh, “Multi-physics Computation and Deformation Testing of a Shell-type 1.5-GHz Cavity”, in Proc. 10th Int. Particle Accelerator Conf. (IPAC'19), Melbourne, Australia, May 2019, pp. 2968-2971.
- D. Schirmer, “A Machine Learning Approach to Electron Orbit Control at the 1.5 GeV Synchrotron Light Source DELTA”, in Proc. 13th Int. Particle Accelerator Conf. (IPAC'22), Bangkok, Thailand, Jun. 2022, pp. 1137-1140.
- C. Compton et al., “Superconducting Quarter-Wave Resonator Cavity and Cryomodule Development for a Heavy Ion Re-accelerator”, in Proc. 24th Linear Accelerator Conf. (LINAC'08), Victoria, Canada, Sep.-Oct. 2008, paper THP033, pp. 854-856.
- E. I. Simakov, S. Biedron, V. Gorelov, M. E. Middendorf, T. Tajima, and M. R. A. Zuboraj, “C-Band High Gradient Testing of the Benchmark a/?=0.105 Cavity”, in Proc. 13th Int. Particle Accelerator Conf. (IPAC'22), Bangkok, Thailand, Jun. 2022, pp. 1564-1566.
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