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[n]	N. Simos et al., “Study of Grapite Targets Interacting with the 24 GeV Proton Beam of the BNL Muon Target Experiment”, in Proc. EPAC'02, Paris, France, Jun. 2002, paper TUPDO024, pp. 2709-2711. 
[n]	J. E. Goodwin and S. M. Pruss, “Chromaticity Modelling in the Fermilab Main Ring”, in Proc. PAC'91, San Francisco, CA, USA, May 1991, pp. 294-297. 
[n]	N. A. Tahir et al., “Simulation Studies of Impact of SPS Beam with Collimator Materials”, in Proc. EPAC'08, Genoa, Italy, Jun. 2008, paper WEPP073, pp. 2689-2691. 
[n]	P. Schreiber et al., “SOLEIL II booster robustness and emittance exchange”, in Proc. IPAC'24, Nashville, TN, USA, May 2024, pp. 3071-3074. doi:10.18429/JACoW-IPAC2024-THPC36
[n]	H. Bizek, E. Crosbie, E. Lessner, L. Teng, and J. Wirsbinski, “Effects of Errors on the Dynamic Aperture of the Advanced Photon Source Storage Ring”, in Proc. PAC'91, San Francisco, CA, USA, May 1991, pp. 210-213. 
[n]	I. Kourbanis, “Progress Towards Doubling the Beam Power at Fermilab's Accelerator Complex”, in Proc. IPAC'14, Dresden, Germany, Jun. 2014, pp. 904-906. doi:10.18429/JACoW-IPAC2014-TUOAA01
[n]	N. R. Holtkamp, “EPS-AG 2008 Gersh Budker Prize Presentation: The Successful Construction and Commissioning of the Spallation Neutron Source”, in Proc. EPAC'08, Genoa, Italy, Jun. 2008, paper THPPGM03, pp. 2960-2962. 
[n]	G. Martinet et al., “Low Temperature Properties of Piezoelectric Actuators Used in SRF Cavities Cold Tuning Systems”, in Proc. EPAC'06, Edinburgh, UK, Jun. 2006, paper MOPCH144, pp. 390-392. 
[n]	J. Lesrel, S. Bousson, T. Junquera, A. Caruette, and M. Fouaidy, “Study of Thermal Effects in SRF Cavities”, in Proc. SRF'97, Padova, Italy, Oct. 1997, paper SRF97B12, pp. 374-384. 
[n]	M. P. Kelly et al., “Production 72 MHz =0.077 Superconducting Quarter-wave Cavities for ATLAS”, in Proc. HIAT'12, Chicago, IL, USA, Jun. 2012, paper WEC01, pp. 174-174. 
[n]	V. S. Dyubkov, S. M. Polozov, and A. V. Samoshin, “Beam Envelope Control in Heavy Ion Superconducting Drift Tube Linac”, in Proc. IPAC'10, Kyoto, Japan, May 2010, paper THPE074, pp. 4689-4691. 
[n]	A. Kolomiets and A. S. Plastun, “RFQ With Improved Energy Gain”, in Proc. LINAC'12, Tel Aviv, Israel, Sep. 2012, paper SUPB016, pp. 41-43. 
[n]	M. C. Bellachioma et al., “Study of the Pressure Profile Inside the NEG Coated Chambers of the SIS 18”, in Proc. IPAC'12, New Orleans, LA, USA, May 2012, paper WEPPD011, pp. 2519-2521. 
[n]	K. Pieterman, J. A. M. Dam, C. Commeaux, and C. Penco, “Low Temperature Tests of the AGOR Superconducting Coil System”, in Proc. Cyclotrons'92, Vancouver, Canada, Jul. 1992, paper XB-01, pp. 557-560. 
[n]	R. E. Rydenko, G. I. Ayzenshtat, and O. P. Tolbanov, “The use of betatron gamma-beam for digital radiographic technique”, in Proc. RuPAC'06, Novosibirsk, Russia, Sep. 2006, paper MOLP17, pp. XX-XX. 
[n]	R. J. Averill, “Beam Bump Method of Target Engagement”, in Proc. PAC'65, Washington D.C., USA, Mar. 1965, pp. 899-905. 
[n]	K. Koepke, E. Fisk, G. Mulholland, and H. Pfeffer, “The Tevatron B/zero Low-Beta System”, in Proc. PAC'85, Vancouver, Canada, May 1985, pp. 1675-1678. 
[n]	T. Junquera, C. Angulo, and D. Vandeplassche, “Requirements for the Cryogenic Refrigerator and the He Distribution System for the MYRRHA 100 Mev Accelerator”, in Proc. IPAC'18, Vancouver, Canada, Apr.-May 2018, pp. 655-657. doi:10.18429/JACoW-IPAC2018-TUPAF001
[n]	T. H. Fields and C. Laverick, “Some Supermagnet Design Considerations”, in Proc. PAC'65, Washington D.C., USA, Mar. 1965, pp. 362-367. 
[n]	E. Prebys et al., “Long Term Plans to Increase Fermilab's Proton Intensity to Meet the Needs of the Long Baseline Neutrino Program”, in Proc. IPAC'16, Busan, Korea, May 2016, pp. 1010-1013. doi:10.18429/JACoW-IPAC2016-TUOAA03
[n]	W. M. Sharp et al., “Inertial Fusion Driven by Intense Heavy-Ion Beams”, in Proc. PAC'11, New York, NY, USA, Mar.-Apr. 2011, paper WEOAS1, pp. 1386-1393. 
[n]	P. Ninin and B. Denis, “The”, in Proc. ICALEPCS'03, Gyeongju, Korea, Oct. 2003, paper MO213, pp. XX-XX. 
[n]	Z. A. Conway et al., “Superconducting Cavity Cryomodules for Heavy-Ion Accelerators”, in Proc. HIAT'15, Yokohama, Japan, Sep. 2015, paper WEM1I01, pp. 163-165. 

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