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[n] A. Morsch, R. Ostojic, and T. M. Taylor, “Progress in the System Design of the Inner Triplet of 70 mm Aperture Quadrupoles for the LHC Low-beta Insertions”, in Proc. EPAC'94, London, UK, Jun.-Jul. 1994, pp. 2274-2277.
[n] D. Schoerling, “Prediction of the Field Distribution in CERN-PS Magnets”, in Proc. IPAC'14, Dresden, Germany, Jun. 2014, pp. 1298-1300. doi:10.18429/JACoW-IPAC2014-TUPRO107
[n] T. Ohkawa, H. Ao, K. Hasegawa, M. Ikegami, H. Sako, and A. Ueno, “Comparison of Trajectory Between Modeling and Experiment for J-PARC Linac”, in Proc. PAC'07, Albuquerque, NM, USA, Jun. 2007, paper THPAN043, pp. 3324-3326.
[n] L. Calabretta and D. Rifuggiato, “High Intensity Superconducting Cyclotron Beams for a Radioactive Ion Beam Facility”, in Proc. Cyclotrons'92, Vancouver, Canada, Jul. 1992, paper XIII-05, pp. 733-736.
[n] P. Calvo, A. Adelmann, M. Frey, A. Gsell, C. Oliver, and J. Snuverink, “Beam Stripping Interactions Implemented in Cyclotrons with OPAL Simulation Code”, in Proc. Cyclotrons'19, Cape Town, South Africa, Sep. 2019, pp. 109-112. doi:10.18429/JACoW-CYCLOTRONS2019-MOP034
[n] A. V. Dalechina, A. I. Ksenofontov, and G. E. Gorlachev, “Histogram Based Bremsstrahlung Radiation Source Model for the CyberKnife Medical Linear Accelerator”, in Proc. RuPAC'14, Obninsk, Russia, Oct. 2014, paper WEPSB42, pp. 256-258.
[n] G. Gaitan et al., “Development of a CVD System for Next-Generation SRF Cavities”, in Proc. NAPAC'22, Albuquerque, NM, USA, Aug. 2022, pp. 372-374. doi:10.18429/JACoW-NAPAC2022-TUPA15
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References
- A. Morsch, R. Ostojic, and T. M. Taylor, “Progress in the System Design of the Inner Triplet of 70 mm Aperture Quadrupoles for the LHC Low-beta Insertions”, in Proc. 4th European Particle Accelerator Conf. (EPAC'94), London, UK, Jun.-Jul. 1994, pp. 2274-2277.
- D. Schoerling, “Prediction of the Field Distribution in CERN-PS Magnets”, in Proc. 5th Int. Particle Accelerator Conf. (IPAC'14), Dresden, Germany, Jun. 2014, pp. 1298-1300.
- T. Ohkawa, H. Ao, K. Hasegawa, M. Ikegami, H. Sako, and A. Ueno, “Comparison of Trajectory Between Modeling and Experiment for J-PARC Linac”, in Proc. 22nd Particle Accelerator Conf. (PAC'07), Albuquerque, NM, USA, Jun. 2007, paper THPAN043, pp. 3324-3326.
- L. Calabretta and D. Rifuggiato, “High Intensity Superconducting Cyclotron Beams for a Radioactive Ion Beam Facility”, in Proc. 13th Int. Cyclotron Conf. and Their Applications (Cyclotrons'92), Vancouver, Canada, Jul. 1992, paper XIII-05, pp. 733-736.
- P. Calvo, A. Adelmann, M. Frey, A. Gsell, C. Oliver, and J. Snuverink, “Beam Stripping Interactions Implemented in Cyclotrons with OPAL Simulation Code”, in Proc. 22nd Int. Conf. on Cyclotrons and their Applications (Cyclotrons'19), Cape Town, South Africa, Sep. 2019, pp. 109-112.
- A. V. Dalechina, A. I. Ksenofontov, and G. E. Gorlachev, “Histogram Based Bremsstrahlung Radiation Source Model for the CyberKnife Medical Linear Accelerator”, in Proc. 24th Russian Particle Accelerator Conf. (RuPAC'14), Obninsk, Russia, Oct. 2014, paper WEPSB42, pp. 256-258.
- G. Gaitan et al., “Development of a CVD System for Next-Generation SRF Cavities”, in Proc. North American Particle Accelerator Conf. (NAPAC'22), Albuquerque, NM, USA, Aug. 2022, pp. 372-374.
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