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[n]	K. Sakaue et al., “Laser-Compton Scattering X-ray Source Based on Normal Conducting Linac and Optical Enhancement Cavity”, in Proc. IPAC'15, Richmond, VA, USA, May 2015, pp. 1635-1637. doi:10.18429/JACoW-IPAC2015-TUPJE011
[n]	D. Bafia et al., “Investigation of Frequency Behavior Near Tc of Niobium Superconducting Radio-Frequency Cavities”, in Proc. SRF'19, Dresden, Germany, Jun.-Jul. 2019, pp. 112-117. doi:10.18429/JACoW-SRF2019-MOP031
[n]	A. S. Aryshev et al., “Q-factor of an Open Resonator for a Compact Soft X-ray Source based on Thomson Scattering of Stimulated Coherent Diffraction Radiation”, in Proc. IPAC'11, San Sebastian, Spain, Sep. 2011, paper THPS095, pp. 3657-3659. 
[n]	J. Klabunde and A. Sch?Ânlein, “Beam Transport with Space Charge Compensation”, in Proc. LINAC'86, Stanford, CA, USA, Sep. 1986, paper WE3-19, pp. 296-298. 
[n]	A. Zolfaghari, P. T. Demos, J. B. Flanz, and K. Jacobs, “Comparison of SW and TW Non-Synchronous Accelerating Cavities as Used in Electron Beam Storage Rings”, in Proc. PAC'91, San Francisco, CA, USA, May 1991, pp. 716-719. 
[n]	T. Weilbach, K. Aulenbacher, and M. W. Bruker, “Beam Profile Measurement for High Intensity Electron Beams”, in Proc. IPAC'13, Shanghai, China, May 2013, paper MOPEA022, pp. 118-120. 
[n]	D. Saez de Jauregui et al., “Possible Superconducting Insertion Devices with Period Length Doubling for Beamlines of Third Generation Light Sources”, in Proc. IPAC'11, San Sebastian, Spain, Sep. 2011, paper THPC161, pp. 3269-3271. 

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