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[n]	S. B. Leith et al., “The Development of HiPIMS Multilayer SIS Film Coatings on Copper for SRF Applications”, in Proc. SRF'21, East Lansing, MI, USA, Jun.-Jul. 2021, pp. 86. doi:10.18429/JACoW-SRF2021-SUPFDV012
[n]	J. S. Eldred, “Physics Studies for High Intensity Proton Beams at the Fermilab Booster”, presented at the NAPAC'19, Lansing, MI, USA, Sep. 2019, paper THZBA1, unpublished. 
[n]	G. Favero et al., “Predictive capabilities in CFD simulations of additively manufactured extraction grid cooling channels for the DTT NBI system”, in Proc. IPAC'23, Venice, Italy, May 2023, pp. 4939-4942. doi:10.18429/JACoW-IPAC2023-THPM022
[n]	R. M. Thurman-Keup et al., “Observation of Polarization-Dependent Changes in Higher-Order Mode Responses as a Function of Transverse Beam Position in Tesla-Type Cavities at FAST”, in Proc. IPAC'21, Campinas, Brazil, May 2021, pp. 756-759. doi:10.18429/JACoW-IPAC2021-MOPAB232
[n]	Y. K. Batygin, D. A. D. Dimitrov, I. Dragani, D. V. Gorelov, E. Henestroza, and S. S. Kurennoy, “High-Brightness RFQ Injector for LANSCE Multi-Beam Operation”, in Proc. LINAC'22, Liverpool, UK, Aug.-Sep. 2022, pp. 130-133. doi:10.18429/JACoW-LINAC2022-MOPOPA24
[n]	S. J. Bean et al., “A New Ultra-Stable Variable Projection Microscope for the APS Upgrade of 32-ID”, in Proc. MEDSI'20, Chicago, USA, Jul. 2021, pp. 211. doi:10.18429/JACoW-MEDSI2020-TUPC15
[n]	V. Wu, C. M. Bhat, and J. A. MacLachlan, “Simulations of an Acceleration Scheme for Producing High Intensity and Low Emittance Antiproton Beam for Fermilab Collider Operation”, in Proc. PAC'05, Knoxville, TN, USA, May 2005, paper TPAP031, pp. 2164-2166. 
[n]	D. El Khechen et al., “Transverse and Longitudinal Profile Measurements at the KARA Booster Synchrotron”, in Proc. IPAC'22, Bangkok, Thailand, Jun. 2022, pp. 304-306. doi:10.18429/JACoW-IPAC2022-MOPOPT027
[n]	R. N. Litunovsky, Yu. G. Basargin, and O. A. Minyaev, “On the Production of Monochromatic Beams Using Cyclotron Acceleration”, in Proc. Cyclotrons'69, Oxford, UK, Sep. 1969, paper CYC69D11, pp. XX-XX. 
[n]	O. Marqversen and D. Alves, “Beam Intensity Measurement in ELENA Using Orbit Pick-Ups”, in Proc. IBIC'22, Kraków, Poland, Sep. 2022, pp. 296-299. doi:10.18429/JACoW-IBIC2022-TUP30
[n]	P. G. Bricault and H. R. Schneider, “Simulation of the TRIUMF Split-Ring 4-Rod RFQ with MAFIA”, in Proc. PAC'95, Dallas, TX, USA, May 1995, paper RPR03, pp. 1125-1127. 
[n]	P. G. Bricault, D. Joffe, and H. R. Schneider, “RFQ Cold Model Studies”, in Proc. PAC'95, Dallas, TX, USA, May 1995, paper RPR02, pp. 1122-1124. 
[n]	C. M. Bhat and P. S. Martin, “Radiation Shielding of the Main Injector”, in Proc. PAC'95, Dallas, TX, USA, May 1995, paper TAA12, pp. 2105-2107. 
[n]	C. M. Bhat, “A Search for Coupled-Bunch Instability in the Fermilab Main Injector”, in Proc. PAC'01, Chicago, IL, USA, Jun. 2001, paper TPPH113, pp. 1933-1935. 
[n]	J. M. Vogt, J. C. Bergstrom, and S. Hu, “Accurate Measurement of the Beam Energy in the CLS Storage Ring”, in Proc. PCaPAC'10, Saskatoon, Canada, Oct. 2010, paper WEPL004, pp. 36-37. 
[n]	C. M. Bhat, “A New Technique for Making Bright Proton Bunches using Barrier RF Systems”, in Proc. PAC'05, Knoxville, TN, USA, May 2005, paper TPAP021, pp. 1745-1747. 
[n]	P. G. Bricault and H. R. Schneider, “RFQ Structure for Low Frequency and CW Operation”, in Proc. LINAC'94, Tsukuba, Japan, Aug. 1994, paper TH-02, pp. 692-694. 
[n]	C. M. Bhat, “Antiproton Stacking and Un-stacking in the Fermilab Recycler Ring”, in Proc. PAC'03, Portland, OR, USA, May 2003, paper WPPE010, pp. 2345-2347. 
[n]	B. C. Brown, C. M. Bhat, D. J. Harding, P. S. Martin, and G. Wu, “Design for Fermilab Main Injector Magnet Ramps which Account for Hysteresis”, in Proc. PAC'97, Vancouver, Canada, May 1997, paper 2P008, pp. 3245-3247. 
[n]	C. M. Bhat and J. A. MacLachlan, “Simulations of Transition Crossing in the Main Injector”, in Proc. PAC'95, Dallas, TX, USA, May 1995, paper WAC06, pp. 3079-3081. 
[n]	L. R. Prost et al., “Transverse Instability of the Antiproton Beam In the Recycler Ring”, in Proc. PAC'11, New York, NY, USA, Mar.-Apr. 2011, paper WEP114, pp. 1698-1700. 
[n]	V. D. Bochkov et al., “Power Supply Systems of High-Voltage Kickers on the Basis of TPI- and TDI-Thyratrons”, in Proc. RuPAC'18, Protvino, Russia, Oct. 2018, pp. 106-109. doi:10.18429/JACoW-RUPAC2018-THCDMH02
[n]	K. Balewski et al., “Commissioning Results of Beam Diagnostics for the PETRA III Light Source”, in Proc. DIPAC'09, Basel, Switzerland, May 2009, paper MOOB02, pp. 19-23. 
[n]	M. Reichanadter, C. M. Bhat, C. Crawford, and P. S. Martin, “A High Intensity Beam Absorber Corebox for the Fermilab Main Injector Abort System”, in Proc. PAC'97, Vancouver, Canada, May 1997, paper 8P014, pp. 243-245. 
[n]	S. A. Kahn and G. H. Morgan, “Magnetic Properties of Iron Yoke Laminations for SSC Dipole Magnets”, in Proc. PAC'91, San Francisco, CA, USA, May 1991, pp. 2170-2173. 
[n]	W. Gai et al., “Advanced Accelerator Test Facility (AATF) Upgrade Plan”, in Proc. PAC'89, Chicago, IL, USA, Mar. 1989, pp. 612-615. 
[n]	A. A. Kolomensky et al., “Spectometric Isochronous Cyclotron”, in Proc. Cyclotrons'69, Oxford, UK, Sep. 1969, paper CYC69D13, pp. XX-XX. 
[n]	V. Palmieri, “Seamless Cavities: the Most Creative Topic in RF Superconductivity”, in Proc. SRF'97, Padova, Italy, Oct. 1997, paper SRF97C18, pp. 553-589. 
[n]	M. J. Hagmann, “Monitoring Transverse Beam Profile with Nonuniformly-Wound Toroidal Coils”, in Proc. BIW'10, Santa Fe, NM, USA, May 2010, paper TUPSM054, pp. 278-281. 
[n]	H. Safa, “Statistical Analysis of the Quench Fields in SCRF Cavities”, in Proc. SRF'97, Padova, Italy, Oct. 1997, paper SRF97C11, pp. 503-509. 

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