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[n]	V. Pavlenko, E. Montgomery, and H. Bhandari, “Technology transfer case study: Industrialized manufacturing of high quality photocathode thin films.”, presented at the IPAC'24, Nashville, TN, USA, May 2024, paper TUUD3, unpublished. 
[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]	Q. Gu, Q. G. Zhou, Z. M. Dai, D. M. Li, and Z. T. Zhao, “Design of an Intense THz Light Source Based on Femto-Second Electron Bunches”, in Proc. APAC'04, Gyeongju, Korea, Mar. 2004, paper TUP11008, pp. XX-XX. 
[n]	J. D. Hepburn and W. L. Michel, “A Microprocessor-Controlled Bead Puller for RF Cavity Measurements”, in Proc. LINAC'81, Santa Fe, NM, USA, Oct. 1981, paper B08, pp. 56-58. 
[n]	T. Perron, G. A. Naylor, E. Plouviez, and B. K. Scheidt, “Test of New Diagnostics for Bunch Length Measurement”, in Proc. DIPAC'05, Lyon, France, Jun. 2005, paper POT024, pp. XX-XX. 
[n]	B. Rachmilowitz et al., “Packaged photocathodes for X-ray free electron lasers”, in Proc. IPAC'25, Taipei, Taiwan, Jun. 2025, pp. 1586-1587. doi:10.18429/JACoW-IPAC2025-TUPS074
[n]	H. X. Deng and Z. M. Dai, “Three Dimensional Simulations on Harmonic Operation of Shanghai Deep Ultraviolet Free Electron Laser”, in Proc. FEL'08, Gyeongju, Korea, Aug. 2008, paper MOPPH032, pp. 55-58. 
[n]	Y. Sato et al., “Zero-Length Conflat Fin-Type Nonevaporable Getter Pump Coated with Oxygen-Free Palladium/Titanium”, in Proc. MEDSI'20, Chicago, USA, Jul. 2021, pp. 107. doi:10.18429/JACoW-MEDSI2020-TUOA03
[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]	C. M. Bhat, “Barrier RF Systems in Synchrotrons”, in Proc. EPAC'04, Lucerne, Switzerland, Jul. 2004, paper THOBCH03, pp. 236-238. 
[n]	S. Matsuba, K. Harada, M. Katoh, K. Kawase, and K. S. Shimada, “Design Study of an Electron Storage Ring for the Future Plan of Hiroshima Synchrotron Radiation Center.”, in Proc. IPAC'19, Melbourne, Australia, May 2019, pp. 200-202. doi:10.18429/JACoW-IPAC2019-MOPGW048
[n]	P. P. Goryl et al., “Solaris Project Status and Challenges”, in Proc. ICALEPCS'11, Grenoble, France, Oct. 2011, paper MOPMU008, pp. 439-441. 
[n]	L. Zwalinski et al., “First Steps in Automated Software Development Approach for LHC Phase II Upgrades CO2 Detector Cooling Systems”, in Proc. ICALEPCS'19, New York, NY, USA, Oct. 2019, pp. 1495. doi:10.18429/JACoW-ICALEPCS2019-WEPHA170
[n]	S. Veitzer and M. Dehnel, “Particle-in-cell modeling of low-temperature plasma ion sources for ion implantation”, in Proc. IPAC'24, Nashville, TN, USA, May 2024, pp. 618-621. doi:10.18429/JACoW-IPAC2024-MOPR75
[n]	H. R?Âcken, M. Abdel-Bary, E. M. Akcoeltekin, P. Budz, T. Stephani, and J. C. Wittschen, “The VARIAN 250 MeV Superconducting Compact Proton Cyclotron: Medical Operation of the 2nd Machine, Production and Commissioning Status of Machines No. 3 to 7”, in Proc. Cyclotrons'10, Lanzhou, China, Sep. 2010, paper TUM1CCO04, pp. 283-285. 
[n]	P. Bosland et al., “Tests of the Low Beta Cavities and Cryomodules for the SPIRAL 2 LINAC”, in Proc. SRF'09, Berlin, Germany, Sep. 2009, paper TUPPO003, pp. 171-175. 
[n]	M. L. Neubauer et al., “Phase and Frequency Locked Magnetrons for SRF Sources”, in Proc. IPAC'11, San Sebastian, Spain, Sep. 2011, paper MOPC140, pp. 406-408. 
[n]	C. J. Sharp et al., “CERN Linac4 Chopper Dump: Operational Experience and Future Upgrades”, in Proc. IPAC'22, Bangkok, Thailand, Jun. 2022, pp. 1370-1373. doi:10.18429/JACoW-IPAC2022-TUPOTK063

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