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[n]	F. Naito et al., “Advanced Copper Lining for Accelerator Components”, in Proc. LINAC'00, Monterey, CA, USA, Aug. 2000, paper THE20, pp. 1015-1017. 
[n]	V. Skalyga, A. Bokhanov, S. Golubev, I. Izotov, and S. S. Vybin, “A High Current Pure Proton Beam Source Prototype”, presented at the RuPAC2021, Alushta, Crimea, Sep.-Oct. 2021, paper THC02, unpublished. 
[n]	X. Wang et al., “Physical design for Shenzhen superconducting soft X-Ray free-electron laser (S3FEL)”, in Proc. IPAC'23, Venice, Italy, May 2023, pp. 1852-1855. doi:10.18429/JACoW-IPAC2023-TUPL043
[n]	R. L. Lapin et al., “Gasdynamic ECR Tandem Ion Source for Negative Hydrogen Ion Production”, in Proc. ECRIS'18, Catania, Italy, Sep. 2018, pp. 191-194. doi:10.18429/JACoW-ECRIS2018-THA5
[n]	R. Corsini et al., “Experimental Studies on Drive Beam Generation in CTF3”, in Proc. EPAC'08, Genoa, Italy, Jun. 2008, paper MOPP010, pp. 571-573. 
[n]	G. S. Mauro et al., “Numerical Simulation and Beam-Dynamics Study of a Hollow-Core Woodpile Coupler for Dielectric Laser Accelerators”, in Proc. IPAC'21, Campinas, Brazil, May 2021, pp. 2022-2025. doi:10.18429/JACoW-IPAC2021-TUPAB246
[n]	A. Alexopoulos et al., “First LHC Transverse Beam Size Measurements With the Beam Gas Vertex Detector”, in Proc. IPAC'17, Copenhagen, Denmark, May 2017, pp. 1240-1243. doi:10.18429/JACoW-IPAC2017-TUOAB1
[n]	S. Golubev et al., “Point-like Neutron Emission Observation Using a Neutron Generator Based on a Gasdynamic ECR Ion Source”, in Proc. ECRIS'18, Catania, Italy, Sep. 2018, pp. 185-187. doi:10.18429/JACoW-ECRIS2018-THA2
[n]	S. Vlachos et al., “The LHC Beam Gas Vertex Detector - a Non-Invasive Profile Monitor for High Energy Machines”, in Proc. IBIC'17, Grand Rapids, MI, USA, Aug. 2017, pp. 323-329. doi:10.18429/JACoW-IBIC2017-WE3AB1
[n]	Yu. P. Bouzouloukov et al., “Beam Transport and Special Undulators Designed for High Power FELs”, in Proc. EPAC'96, Sitges, Spain, Jun. 1996, paper WEP106G, pp. 742-744. 
[n]	A. Vodopyanov, S. Golubev, I. Izotov, A. Mansfeld, and G. Yushkov, “He2+ Source Based on Penning Discharge with Additional 75 GHz ECR Heating”, in Proc. ECRIS'10, Grenoble, France, Aug. 2010, paper MOPOT008, pp. 54-54. 
[n]	M. Mousavinia, H. Afarideh, and M. Ghergherehchi, “Design and Simulation of Cavity for 18 MeV Cyclotron”, in Proc. Cyclotrons'16, Zurich, Switzerland, Sep. 2016, pp. 267-269. doi:10.18429/JACoW-Cyclotrons2016-WEB03
[n]	J. Branlard et al., “Equipping FLASH with MTCA.4-based LLRF System”, in Proc. SRF'13, Paris, France, Sep. 2013, paper THP085, pp. 1126-1128. 
[n]	O. V. Chubar et al., “Novel Opportunities for Sub-meV Inelastic X-Ray Scattering Experiments at High-Repetition Rate Self-seeded XFELs”, in Proc. FEL'15, Daejeon, Korea, Aug. 2015, pp. 257-262. doi:10.18429/JACoW-FEL2015-MOP086
[n]	D. P. May et al., “Status of the Texas A&M University Cyclotron Institute”, in Proc. Cyclotrons'16, Zurich, Switzerland, Sep. 2016, pp. 281-284. doi:10.18429/JACoW-Cyclotrons2016-THA04
[n]	M. R. Clausen, M. Moeller, S. Rettig-Labusga, and B. Schoeneburg, “What it Takes to Make a System Reliable”, in Proc. PCaPAC'12, Kolkata, India, Dec. 2012, paper THPD02, pp. 139-141. 
[n]	P. Ferracin et al., “Field Quality Analysis of a Second Generation IR Quadrupole for the LHC”, in Proc. PAC'03, Portland, OR, USA, May 2003, paper WPAE021, pp. 1984-1986. 
[n]	N. V. Mokhov et al., “Energy Deposition Limits in a Nb3Sn Separation Dipole in Front of the LHC High-Luminosity Inner Triplet”, in Proc. PAC'03, Portland, OR, USA, May 2003, paper TPPB065, pp. 1748-1750. 

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