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[n]	C. Ronsivalle et al., “Study of the Effect of Multipolar Components in the SPARC Emittance Compensation Gun Solenoid”, in Proc. EPAC'06, Edinburgh, UK, Jun. 2006, paper WEPCH022, pp. 1969-1971. 
[n]	E. R. Harms et al., “Status of 3.9-GHz Superconducting RF Cavity Technology at Fermilab”, in Proc. LINAC'06, Knoxville, TN, USA, Aug. 2006, paper THP051, pp. 695-697. 
[n]	I. Terechkine et al., “High Power Phase Shifter”, in Proc. PAC'05, Knoxville, TN, USA, May 2005, paper WPAT050, pp. 3123-3125. 
[n]	G. Schaffer, “Improved Ferrite Biasing Scheme for Booster RF Cavities”, in Proc. EPAC'92, Berlin, Germany, Mar. 1992, pp. 1234-1237. 
[n]	M. J. P. Adam and N. Appathurai, “Evaluation of Anisotropic Simulations & Redesign of the BXDS High Energy Monochromator Bent Laue Diffraction Crystal Holders”, in Proc. MEDSI'18, Paris, France, Jun. 2018, pp. 199-201. doi:10.18429/JACoW-MEDSI2018-WEPH01
[n]	R. Yadav, A. Penirschke, and S. Preu, “Intermediate Frequency Circuit Components for Integration of on-Chip Amplifier With THz Detectors”, in Proc. IBIC'23, Saskatoon, Canada, Sep. 2023, pp. 204-208. doi:10.18429/JACoW-IBIC2023-TUP010
[n]	N. Solyak et al., “Development of the Superconducting 3.9 GHz Accelerating Cavity at Fermilab”, in Proc. PAC'05, Knoxville, TN, USA, May 2005, paper TPPT070, pp. 3825-3827. 
[n]	J. M. Byrd et al., “CIRCE, the Coherent InfraRed CEnter at the ALS”, in Proc. EPAC'04, Lucerne, Switzerland, Jul. 2004, paper THPKF073, pp. 2436-2438. 

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