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[n]	R. Calaga, M. Aiba, R. Tom?ís, and G. Vanbavinckhove, “Linear and Chromatic Optics Measurements at RHIC”, in Proc. IPAC'10, Kyoto, Japan, May 2010, paper THPE053, pp. 4638-4640. 
[n]	N. Solyak et al., “Status of LHC Crab Cavity Cryostat”, in Proc. PAC'09, Vancouver, Canada, May 2009, paper TU5PFP034, pp. 894-896. 
[n]	D. Raparia, J. G. Alessi, Y. Y. Lee, and W. T. Weng, “Achromat with Linear Space Charge for Bunched Beams”, in Proc. LINAC'98, Chicago, IL, USA, Aug. 1998, paper TH4023, pp. 818-820. 
[n]	P. Dhakal, G. Ciovati, P. Kneisel, and R. Myneni, “Superconducting DC and RF Properties of Ingot Niobium”, in Proc. SRF'11, Chicago, IL, USA, Jul. 2011, paper THPO057, pp. 856-861. 
[n]	S. Sakanaka, T. Mitsuhashi, and T. Obina, “Measurement of the Transverse Quadrupole-Mode Frequencies of an Electron Bunch in the KEK Photon Factory Storage Ring”, in Proc. PAC'03, Portland, OR, USA, May 2003, paper RPPG015, pp. 3207-3209. 
[n]	D. L. Hall et al., “Beam-based HOM Measurements in Cornell's ERL Main Linac Cavity”, in Proc. IPAC'14, Dresden, Germany, Jun. 2014, pp. 359-362. doi:10.18429/JACoW-IPAC2014-MOPRO113
[n]	S. Fukuda et al., “Compensation of Initial Beam Loading for Electron Linacs”, in Proc. EPAC'00, Vienna, Austria, Jun. 2000, paper THP5A07, pp. 2462-2464. 
[n]	G. Stanford et al., “Mechanical Design, Construction and Alignment of the ISAC RFQ Accelerator at TRIUMF”, in Proc. LINAC'98, Chicago, IL, USA, Aug. 1998, paper TH4094, pp. 980-982. 
[n]	O. R. Blanco-Garc?¡a et al., “Optics Model and Measurements of the DANE Transfer Lines”, in Proc. IPAC'18, Vancouver, Canada, Apr.-May 2018, pp. 3249-3251. doi:10.18429/JACoW-IPAC2018-THPAK020
[n]	J. R. Delayen, L. R. Doolittle, and C. E. Reece, “Analysis of Performance Limitations for Superconducting Cavities”, in Proc. LINAC'98, Chicago, IL, USA, Aug. 1998, paper TH4098, pp. 989-991. 
[n]	C. Montag et al., “eRHIC Design Overview”, in Proc. IPAC'19, Melbourne, Australia, May 2019, pp. 45-48. doi:10.18429/JACoW-IPAC2019-MOZZPLS1
[n]	M. Yamamoto et al., “Acceleration Voltage Pattern for J-PARC RCS”, in Proc. EPAC'08, Genoa, Italy, Jun. 2008, paper MOPC132, pp. 379-381. 
[n]	C. Gumus et al., “Design and Status of the MicroTCA.4 Based LLRF System for TARLA”, in Proc. IPAC'18, Vancouver, Canada, Apr.-May 2018, pp. 2490-2492. doi:10.18429/JACoW-IPAC2018-WEPMF054
[n]	Y. Yamamoto et al., “Experimental Result of Lorentz Detuning in STF Phas10-1 at KEK-STF”, in Proc. SRF'09, Berlin, Germany, Sep. 2009, paper TUPPO007, pp. 188-192. 
[n]	R. R. Mitchell, M. Cola, G. Ellis, and R. C. Gentzlinger, “Structural Analysis of the APT Superconducting Cavities”, in Proc. SRF'99, Santa Fe, NM, USA, Nov. 1999, paper WEP013, pp. 405-421. 
[n]	R. Barday et al., “Characterization of a Superconducting Pb Photocathode in a SRF Gun Cavity”, in Proc. IPAC'13, Shanghai, China, May 2013, paper MOPFI001, pp. 279-281. 
[n]	J. Counsell, D. M. Dykes, P. E. Gibbins, P. A. McIntosh, and A. J. Moss, “Recommissioning of the RF System after the SRS Upgrade”, in Proc. PAC'99, New York, NY, USA, Mar. 1999, paper MOP154, pp. 1025-1027. 
[n]	X. L. Guo, “An Active Power Filter Based on Wavelet Analysis”, in Proc. IPAC'11, San Sebastian, Spain, Sep. 2011, paper THPO004, pp. 3341-3342. 
[n]	S. Korbly, A. S. Kesar, M. A. Shapiro, and R. J. Temkin, “Progress on a Smith-Purcell Radiation Bunch Length Diagnostic”, in Proc. PAC'03, Portland, OR, USA, May 2003, paper WPPB057, pp. 2536-2538. 
[n]	C. Ohmori et al., “High Gradient RF System for Upgrade of J-PARC”, in Proc. HB'14, East Lansing, MI, USA, Nov. 2014, paper TUO1AB01, pp. 162-164. 
[n]	K. Kubo, K. Akai, E. Kako, S. Noguchi, T. Shishido, and T. Suzuki, “Status of the TRISTAN Superconducting RF System”, in Proc. EPAC'90, Nice, France, Jun. 1990, pp. 1085-1088. 
[n]	V. G. Ziemann, “Coupled Orbit Response Coefficients with Constant Revolution Time”, in Proc. IPAC'15, Richmond, VA, USA, May 2015, pp. 354-355. doi:10.18429/JACoW-IPAC2015-MOPJE033
[n]	S. Posen, G. H. Hoffstaetter, M. Liepe, and Y. Xie, “Recent Developments in the Cornell Nb3Sn Initiative”, in Proc. IPAC'12, New Orleans, LA, USA, May 2012, paper WEPPC078, pp. 2390-2392. 
[n]	G. E. Fischer, M. Anderson, R. Byers, and K. Halbach, “SLC Arc Transport System - Magnet Design and Construction”, in Proc. PAC'85, Vancouver, Canada, May 1985, pp. 3657-3660. 
[n]	S. L. Smith, “A Review of ERL Prototype Experience and Light Source Design Challenges”, in Proc. EPAC'06, Edinburgh, UK, Jun. 2006, paper MOZBPA02, pp. 39-43. 
[n]	R. Floersch and G. Domer, “Resonance Control Cooling System for the APT/LEDA RFQ”, in Proc. LINAC'98, Chicago, IL, USA, Aug. 1998, paper TH4099, pp. 992-994. 
[n]	R. Cubizolles et al., “Final Design of the LB650 Cryomodule for the PIP-II Linear Accelerator”, in Proc. SRF'23, Grand Rapids, MI, USA, Jun. 2023, pp. 721-726. doi:10.18429/JACoW-SRF2023-WEPWB063
[n]	F. Carra, K. Brodzinski, E. Cano-Pleite, and O. Capatina, “Numerical and Experimental Evaluation of the DQW Crab Cavity Cryomodule Thermal Budget”, in Proc. IPAC'19, Melbourne, Australia, May 2019, pp. 1074-1077. doi:10.18429/JACoW-IPAC2019-MOPTS092
[n]	R. Calaga, R. Tom?ís, and F. Zimmermann, “LHC Crab-cavity Aspects and Strategy”, in Proc. IPAC'10, Kyoto, Japan, May 2010, paper TUOAMH02, pp. 1240-1242. 
[n]	P. A. McIntosh, “A Proposed New HOM Monitoring System on the SRS”, in Proc. PAC'97, Vancouver, Canada, May 1997, paper 8P051, pp. 2223-2225. 
[n]	Y.-H. Liu et al., “TPS SR Kicker Prototype Installation Status”, in Proc. IPAC'11, San Sebastian, Spain, Sep. 2011, paper THPC147, pp. 3230-3232. 
[n]	J. E. Stovall, “Initial Performance of the PIGMI Prototype”, in Proc. PAC'79, San Francisco, CA, USA, Mar. 1979, pp. 3767-3770. 
[n]	T. J. Jones et al., “Development of a Novel Supporting System for High Luminosity LHC SRF Crab Cavities”, in Proc. SRF'17, Lanzhou, China, Jul. 2017, pp. 304-308. doi:10.18429/JACoW-SRF2017-MOPB104
[n]	Y. Kamiya, “Computational Method for the Dispersion, Betatron Functions and C. O. D. in Nonlinear Lattice”, in Proc. PAC'79, San Francisco, CA, USA, Mar. 1979, pp. 3821-3824. 
[n]	Q. K. Jia, “Design Consideration of New Insertion Devices of Hefei Light Source”, in Proc. IPAC'11, San Sebastian, Spain, Sep. 2011, paper THPC166, pp. 3284-3286. 
[n]	M. Hess, “Parametric Study of a Novel Coaxial Bunched Beam Space-charge Limit”, in Proc. EPAC'08, Genoa, Italy, Jun. 2008, paper MOPD023, pp. 493-495. 
[n]	Y. Shobuda, P. K. Saha, M. Yamamoto, Y. H. Chin, Y. Irie, and T. Toyama, “The Kicker Impedance and its Effect on the RCS in J-PARC”, in Proc. HB'14, East Lansing, MI, USA, Nov. 2014, paper THO2AB02, pp. 369-373. 
[n]	K. Artoos et al., “Development of SRF Cavity Tuners for CERN”, in Proc. SRF'15, Whistler, Canada, Sep. 2015, paper THPB060, pp. 1247-1251. 
[n]	V. G. Ziemann, “Charged Particle Transport, Gaussian Optics, Error Propagation: It's all the Same”, in Proc. IPAC'16, Busan, Korea, May 2016, pp. 3324-3327. doi:10.18429/JACoW-IPAC2016-THPMB040
[n]	J. Campmany, J. Marcos, and V. Massana, “Performance of ID at ALBA”, in Proc. IPAC'11, San Sebastian, Spain, Sep. 2011, paper THPC171, pp. 3299-3301. 
[n]	A. A. Aseev and S. V. Sokolov, “Investigation of the IHEP Proton Synchrotorn Beam Debunching During its Interaction with a Thin Internal Target”, in Proc. EPAC'90, Nice, France, Jun. 1990, pp. 1725-1728. 
[n]	J. K. Sekutowicz, P. Kneisel, R. Nietubyc, T. Rao, and J. Smedley, “QE Tests with Nb-Pb SRF Photoinjector and Arc Deposited Cathodes”, in Proc. IPAC'10, Kyoto, Japan, May 2010, paper THPEC020, pp. 4086-4088. 
[n]	R. Baartman, R. Laxdal, and L. Root, “Long Range Plan Proposal for an Extension to ISAC”, in Proc. LINAC'98, Chicago, IL, USA, Aug. 1998, paper TH4020, pp. 809-811. 
[n]	Y. Ogawa, A. Enomoto, T. Kamitani, S. Ohsawa, and I. Sato, “Wake-Field Issues Concerning the KEK B-Factory Injector Linac”, in Proc. LINAC'94, Tsukuba, Japan, Aug. 1994, paper TU-73, pp. 535-537. 
[n]	J. K. Sekutowicz and P. Kneisel, “Coaxial Coupling Scheme for TESLA/ILC-type Cavities”, in Proc. IPAC'10, Kyoto, Japan, May 2010, paper THPEC021, pp. 4089-4091. 
[n]	F. Qiu, S. Fukuda, S. Matsumoto, T. Matsumoto, T. Miura, and T. Natsui, “Design Study of a High Efficiency Klystron for SuperKEKB Linac”, in Proc. LINAC'18, Beijing, China, Sep. 2018, pp. 901-904. doi:10.18429/JACoW-LINAC2018-THPO096

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