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[n]	G. Gaitan et al., “Development of a Plasma-Enhanced Chemical Vapor Deposition System for High-Performance SRF Cavities”, in Proc. SRF'23, Grand Rapids, MI, USA, Jun. 2023, pp. 100-103. doi:10.18429/JACoW-SRF2023-MOPMB015
[n]	D. Li, K. Imasaki, Z. Liang, W. Liu, and Z. Yang, “Two-Stream Smith-Purcell Free-Electron Laser Using a Dual-Grating: Linear Analysis”, in Proc. FEL'06, Berlin, Germany, Aug.-Sep. 2006, paper MOPPH033, pp. 111-114. 
[n]	F. Gerigk, M. Pasini, M. Vretenar, R. Wegner, and N. Alharbi, “Design and Development of RF Structures for Linac4”, in Proc. LINAC'06, Knoxville, TN, USA, Aug. 2006, paper THP044, pp. 679-681. 
[n]	J. Wyzula et al., “BEC widgets: A modern modular framework for Beamline Experiment Control”, in Proc. ICALEPCS'25, Chicago, IL, USA, Sep. 2025, pp. 1806-1811. doi:10.18429/JACoW-ICALEPCS2025-THPD093
[n]	A. Schmidt et al., “A multi-voltage FEBIAD ion source for the study of molecular properties”, presented at the HIAT'25, East Lansing, MI, USA, Jun. 2025, paper WEC03, unpublished. 
[n]	M. Barnes et al., “Operational experience of a low beam coupling impedance injection kicker magnet for the CERN SPS ring”, in Proc. IPAC'23, Venice, Italy, May 2023, pp. 4352-4355. doi:10.18429/JACoW-IPAC2023-THPA164
[n]	A. Costa et al., “Big Data Architectures for Logging and Monitoring Large Scale Telescope Arrays”, in Proc. ICALEPCS'19, New York, NY, USA, Oct. 2019, pp. 267. doi:10.18429/JACoW-ICALEPCS2019-MOPHA032
[n]	S. Serkez, G. Geloni, N. Gerasimova, O. Gorobtsov, and B. Sobko, “ROSA: Reconstruction of Spectrogram Autocorrelation for Self-Amplified Spontaneous Emission Free-Electron Lasers”, in Proc. FEL'19, Hamburg, Germany, Aug. 2019, pp. 506-509. doi:10.18429/JACoW-FEL2019-WEP080
[n]	C. Bruni et al., “TWAC : EIC Pathfinder Open European project on Novel dielectric acceleration”, in Proc. IPAC'23, Venice, Italy, May 2023, pp. 1468-1471. doi:10.18429/JACoW-IPAC2023-TUPA061
[n]	K. Howard, D. Bafia, A. Grassellino, and Y. K. Kim, “Analysis of Low RRR SRF Cavities”, in Proc. NAPAC'22, Albuquerque, NM, USA, Aug. 2022, pp. 877-880. doi:10.18429/JACoW-NAPAC2022-THYE5
[n]	C. Bate et al., “Nitrogen Infusion Sample R&D at DESY”, in Proc. SRF'19, Dresden, Germany, Jun.-Jul. 2019, pp. 77-82. doi:10.18429/JACoW-SRF2019-MOP023
[n]	B. A. Tatum, “Development of the Holifield Radioactive Ion Beam Facility”, in Proc. PAC'97, Vancouver, Canada, May 1997, paper 7V009, pp. 1227-1229. 
[n]	M. Di Giacomo, A. Orduz, C. Jamet, J.-F. Leyge, and P. Salou, “Phase setting issues for the SPIRAL2 LINAC”, in Proc. LINAC'24, Chicago, IL, USA, Aug. 2024, pp. 383-386. doi:10.18429/JACoW-LINAC2024-TUPB025
[n]	J. Shannon, C. A. Forrester, and K. A. Ralphs, “Diamond Light Source Athena Platform”, in Proc. ICALEPCS'23, Cape Town, South Africa, Oct. 2023, pp. 1115-1119. doi:10.18429/JACoW-ICALEPCS2023-TH1BCO05
[n]	A. Garren, I. Haber, and G. Krafft, “Focusing of Heavy Ion Beams on a Fusion Target”, in Proc. PAC'81, Washington D.C., USA, Mar. 1981, pp. 2468-2471. 
[n]	M. T. Buttram, “Repetitive Pulse Accelerator Technology for Light Ion Inertial Confinement Fusion”, in Proc. PAC'85, Vancouver, Canada, May 1985, pp. 1571-1576. 
[n]	M. Blaskiewicz et al., “Measuring Nonlinear Momentum Compaction in RHIC”, in Proc. PAC'01, Chicago, IL, USA, Jun. 2001, paper TPPH006, pp. 1665-1666. 
[n]	J. A. Dinkel, J. E. Griffin, E. L. Hubbard, R. E. Peters, and L. C. Teng, “Synchronous Transfer of Beam from the NAL Fast Cycling Booster Synchrotron to the NAL Main Ring System”, in Proc. PAC'73, San Francisco, CA, USA, Mar. 1973, pp. 351-355. 
[n]	A. Orduz et al., “Commissioning and operation of the SPIRAL2 SC linac”, in Proc. IPAC'23, Venice, Italy, May 2023, pp. 5187-5192. doi:10.18429/JACoW-IPAC2023-FRXD3
[n]	S. Pioli et al., “The Machine Protection System for the ELI-NP Gamma Beam System”, in Proc. IPAC'17, Copenhagen, Denmark, May 2017, pp. 1824-1826. doi:10.18429/JACoW-IPAC2017-TUPIK058
[n]	G. Brautti, A. Boggia, A. Raino, N. Ceci, V. Valentino, and V. Variale, “Trapped Ion Source”, in Proc. PAC'97, Vancouver, Canada, May 1997, paper 6W012, pp. 2729-2731. 
[n]	D. T. Abell, G. I. Bell, E. Forest, and A. V. Sobol, “Simulation of Space-Charge Effects in an FFAG Using PTC”, in Proc. HB'08, Nashville, TN, USA, Aug. 2008, paper WGA34, pp. 183-183. 
[n]	M. Sch?â, M. A. Obermayer, U. Ratzinger, and M. Syha, “Status of the modulated 3 MeV 325 MHz Ladder-RFQ”, in Proc. IPAC'17, Copenhagen, Denmark, May 2017, pp. 2249-2251. doi:10.18429/JACoW-IPAC2017-TUPVA074
[n]	G. F. Burdzik, “Field Processing Methods Developed for a Separated-Sector Cyclotron”, in Proc. PAC'79, San Francisco, CA, USA, Mar. 1979, pp. 3910-3913. 
[n]	Yu. G. Alenitsky et al., “ISOCHRONOUS CYCLOTRON C250 FOR PROTON THERAPY APPLICATION”, in Proc. RuPAC'08, Zvenigorod, Russia, Sep.-Oct. 2008, paper THBPH10, pp. XX-XX. 
[n]	D. Davino, L. Campajola, V. Lo Destro, M. R. Masullo, A. G. Ruggiero, and V. G. Vaccaro, “First Results of the CRFQ Proof of Principle”, in Proc. EPAC'06, Edinburgh, UK, Jun. 2006, paper WEOBPA01, pp. 1873-1875. 
[n]	N. Jobert, E. Fonda, T. Moreno, and M. Ribbens, “Optomechanical Optimization for a Sagittaly Bent Double Crystal Monochromator, Using Finite Elements and Ray Tracing”, in Proc. MEDSI'18, Paris, France, Jun. 2018, pp. 231-234. doi:10.18429/JACoW-MEDSI2018-WEPH14

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