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[n]	D. J. Harding et al., “Air-Cooled Trim Dipoles for the Fermilab Main Injector”, in Proc. PAC'97, Vancouver, Canada, May 1997, paper 7P034, pp. 3291-3293. 
[n]	N. Simos, H. G. Kirk, K. T. McDonald, N. V. Mokhov, J. G. O Conor, and L. P. Trung, “Experimental Studies of Targets and Collimators for High Intensity Beams”, in Proc. HB'06, Tsukuba, Japan, May-Jun. 2006, paper TUBZ04, pp. 143-149. 
[n]	D. H. Edgell, J. S. Kim, S. K. Wong, R. C. Pardo, and R. Vondrasek, “Monte Carlo Model of Charge-State Distributions for Electron Cyclotron Resonance Ion Source Plasmas”, in Proc. PAC'99, New York, NY, USA, Mar. 1999, paper WEA5, pp. 1890-1892. 
[n]	M. Gaowei and J. Cen, “New Methods of Synthesizing Ultra-Smooth and High Efficiency Alkali Antimonide Photocathodes for Future Light Sources”, presented at the NAPAC'19, Lansing, MI, USA, Sep. 2019, paper TUYBA5, unpublished. 
[n]	R. M. Zwaska, B. C. Brown, I. Kourbanis, A. Marchionni, and E. Prebys, “Beam Loss at the Fermilab Booster and Main Injector: Recent Experience and the Road to MW Class Beams”, in Proc. HB'06, Tsukuba, Japan, May-Jun. 2006, paper WEAZ02, pp. XX-XX. 
[n]	K. C. D. Chan and P. Schoessow, “Computer Simulations of New Dielectric Accelerator Devices”, in Proc. LINAC'90, Albuquerque, NM, USA, Sep. 1990, paper TH453, pp. 736-738. 
[n]	L. Guo, M. Kuriki, Z. Liptak, and Y. Takashima, “Study on deposition method for improving quantum efficiency and lifetime of NEA-GaAs photocathode using cesium, antimony and oxygen”, in Proc. IPAC'25, Taipei, Taiwan, Jun. 2025, pp. 1256-1258. doi:10.18429/JACoW-IPAC2025-TUPM046

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