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[n]	S. Michizono, “Current Status and Future Technological Collaboration for the ILC”, presented at the SRF'23, Grand Rapids, MI, USA, Jun. 2023, paper WEKEA01, unpublished. 
[n]	J. Sears et al., “Microscopic Investigation of RF Surfaces of 3 GHz Niobium Accelerator Cavities Following RF Processing”, in Proc. PAC'93, Washington D.C., USA, Mar. 1993, pp. 889-892. 
[n]	J. Vàzquez i Mas et al., “Exploring convective heat transfer coefficients in fully developed flows: a combined CFD analysis and experimental validation for common geometries in particle accelerators”, in Proc. IPAC'24, Nashville, TN, USA, May 2024, pp. 1593-1596. doi:10.18429/JACoW-IPAC2024-TUPR76
[n]	C. R. Hoffmann, “Extraction System Model Experiments for the Chalk River Superconducting Cyclotron”, in Proc. Cyclotrons'81, Caen, France, Sep. 1981, paper EP-32, pp. 497-499. 
[n]	G. Kim, D. May, P. McIntyre, and A. Sattarov, “A Superconduction Isochronous Cyclotron Stack as a Driver for a Thorium-Cycle Power Reactor”, in Proc. Cyclotrons'01, East Lansing, MI, USA, May 2001, paper L-5, pp. XX-XX. 
[n]	M. Ribeaudeau, P. Bosland, A. Chevarier, O. Guise, and P. Trouve, “RBS and NRS Analysis of Sputtered Nb Films Annealed at Different Temperatures”, in Proc. SRF'97, Padova, Italy, Oct. 1997, paper SRF97D34, pp. 1110-1118. 
[n]	J. Alessi et al., “The AGS H RFQ Preinjector”, in Proc. LINAC'88, Williamsburg, VA, USA, Oct. 1988, paper MO3-59, pp. 196-198. 
[n]	J. L. Wiener and H. Padamsee, “Improvements in Field Emission: A Statistical Model for Electropolished Baked Cavities”, in Proc. EPAC'08, Genoa, Italy, Jun. 2008, paper MOPP164, pp. 934-936. 
[n]	F. Naito et al., “Input Coupler for the KEKB Normal Conducting Cavity”, in Proc. PAC'95, Dallas, TX, USA, May 1995, paper WPR09, pp. 1806-1808. 
[n]	V. Volkov et al., “Thermo-Cathode RF Gun for BINP Race-Track Microtron-Recuperator”, in Proc. EPAC'08, Genoa, Italy, Jun. 2008, paper WEPC094, pp. 2213-2215. 
[n]	P. Kneisel, G. Ciovati, K. Davis, K. Macha, and J. Mammosser, “Superconducting Prototype Cavities for the Spallation Neutron Source (SNS) Project”, in Proc. EPAC'02, Paris, France, Jun. 2002, paper THPDO015, pp. 2247-2249. 
[n]	Y. Kadi et al., “Status of Radioactive Ion Beam Post-Acceleration at CERN-ISOLDE”, in Proc. IPAC'17, Copenhagen, Denmark, May 2017, pp. 2466-2469. doi:10.18429/JACoW-IPAC2017-WEOAA2
[n]	M. E. Abdelaziz, M. M. Abdelbaki, and S. G. Zakhary, “Review of Research and Development on Radio Frequency Ion Sources”, in Proc. PAC'87, Washington D.C., USA, Mar. 1987, pp. 331-334. 
[n]	H. Schmeing et al., “Current Status of the Superconducting Cyclotron at Chalk River”, in Proc. Cyclotrons'89, Berlin, Germany, May 1989, paper D-03, pp. 88-92. 
[n]	D. C. Nguyen, “Development of High-average-current RF Injectors”, in Proc. FEL'08, Gyeongju, Korea, Aug. 2008, paper THCAU02, pp. 511-516. 
[n]	R. Eichhorn et al., “The CW Linac Cryo-module for Cornell's ERL”, in Proc. IPAC'13, Shanghai, China, May 2013, paper WEPWO060, pp. 2444-2446. 
[n]	W. T. Diamond, C. R. Hoffmann, G. R. Mitchel, and H. Schmeing, “The Electrostatic Deflector for the Chalk River Superconducting Cyclotron”, in Proc. Cyclotrons'92, Vancouver, Canada, Jul. 1992, paper XC-01, pp. 569-572. 

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