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[n]	I. V. Bazarov et al., “Initial Beam Results from the Cornell High-Current ERL Injector Prototype”, in Proc. PAC'09, Vancouver, Canada, May 2009, paper TU2GRI01, pp. 683-687. 
[n]	T.-C. Yu et al., “Adaptive Control of Klystron Operation Parameters for Energy Saving at Storage Ring of TPS”, in Proc. IPAC'21, Campinas, Brazil, May 2021, pp. 3748-3751. doi:10.18429/JACoW-IPAC2021-THXC07
[n]	K. L. F. Bane, C. Adolphsen, A. Chao, and Z. Li, “A Study of Resonant Excitation of Longitudinal HOMs in the Cryomodules of LCLS-II”, in Proc. SRF'15, Whistler, Canada, Sep. 2015, paper THPB007, pp. 1073-1077. 
[n]	G. Wu, “Overview on Magnetic Field Management and Shielding in High Q Modules”, in Proc. SRF'15, Whistler, Canada, Sep. 2015, paper THBA06, pp. 1043-1048. 
[n]	Y. Hashimoto, T. Toyama, T. M. Mitsuhashi, M. Tejima, and S. Otsu, “A Development of High Sensitive Beam Profile Monitor using Multi-Screen”, in Proc. IBIC'13, Oxford, UK, Sep. 2013, paper TUCL2, pp. 338-341. 
[n]	G. H. Hoffstaetter, “An ERL-Driven Intense Compton Source Above 100 keV and Other ERL Applications”, presented at the IPAC'22, Bangkok, Thailand, Jun. 2022, paper TUIZGD1, unpublished. 
[n]	T. J. Peterson et al., “LCLS-II 1.3 GHz Cryomodule Design ÔÇô Modified TESLA-Style Cryomodule for CW Operation”, in Proc. SRF'15, Whistler, Canada, Sep. 2015, paper THPB119, pp. 1417-1421. 

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