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[n]	P. V. Avrakhov, A. Kanareykin, R. A. Kostin, N. Solyak, and V. P. Yakovlev, “Studies of the Superconducting Traveling Wave Cavity for High Gradient Linac”, in Proc. NAPAC'13, Pasadena, CA, USA, Sep.-Oct. 2013, paper WEPAC14, pp. 820-822. 
[n]	P. Grand and A. N. Goland, “On the Needs and Status of CTR Materials Irradiation Facilities, an Introduction to 14-MeV Neutron Sources”, in Proc. LINAC'76, Chalk River, Canada, Sep. 1976, paper C05, pp. 132-137. 
[n]	Y. Iwashita et al., “R&D of Thin Film Coating on Superconductors”, in Proc. SRF'17, Lanzhou, China, Jul. 2017, pp. 877-880. doi:10.18429/JACoW-SRF2017-THPB058
[n]	R. Keyser, J. P. Koutchouk, R. C. B. Parker, J. Pett, and P. Wolstenholme, “Plans for the LEP Control System”, in Proc. PAC'79, San Francisco, CA, USA, Mar. 1979, pp. 3182-3185. 
[n]	S. Nikiforov, D. V. Efremov, A. Solnyshkov, D. Solnyshkov, and G. Voronin, “Development of an ECR Ion Source for Accelerators and Plasma Processing Applications”, in Proc. EPAC'94, London, UK, Jun.-Jul. 1994, pp. 1427-1430. 
[n]	E. Fischer, H. G. Khodzhibagiyan, A. D. Kovalenko, R. V. Kurnyshov, G. Moritz, and P. A. Shcherbakov, “Analysis of the Superferric Quadrupole Magnet Design for the SIS100 Accelerator of the FAIR Project”, in Proc. EPAC'06, Edinburgh, UK, Jun. 2006, paper WEPLS091, pp. 2586-2588. 
[n]	K. Akai, “Operation of High-luminosity Meson Factories and the Challenge to go to the Next Generation”, in Proc. EPAC'06, Edinburgh, UK, Jun. 2006, paper MOYBPA02, pp. 19-23. 
[n]	N. Hayashi, S. Lee, and T. Toyama, “Beam-based Alignment Strategy for the Group Controlled Magnets System”, in Proc. EPAC'06, Edinburgh, UK, Jun. 2006, paper TUPCH064, pp. 1160-1162. 
[n]	Ch. Markovits, “Design of a High Intensity 860 keV Proton Beam Transport Line for the New SIN Injector”, in Proc. Cyclotrons'81, Caen, France, Sep. 1981, paper EP-39, pp. 525-527. 
[n]	K. Yamamoto, T. Hattori, M. Okamura, and S. Yamada, “The Study of APF-IH Linac”, in Proc. EPAC'04, Lucerne, Switzerland, Jul. 2004, paper THPLT079, pp. 2679-2681. 
[n]	H. J. Halama and J. C. Herrera, “Comparison of Cold and Warm Vacuum Systems for Intersecting Storage Rings”, in Proc. PAC'75, Washington D.C., USA, Mar. 1975, pp. 1492-1496. 
[n]	D. Sertore, A. Bonucci, J. H. Han, P. Michelato, L. Monaco, and S. Schreiber, “Review of the Production Process of TTF and PITZ Photocathodes”, in Proc. PAC'05, Knoxville, TN, USA, May 2005, paper MOPB009, pp. 671-673. 
[n]	J. Tamura, Y. Kondo, T. Morishita, F. Naito, Y. Nemoto, and M. Otani, “VSWR Adjustment for ACS Cavity in J-PARC LINAC”, in Proc. IPAC'19, Melbourne, Australia, May 2019, pp. 974-976. doi:10.18429/JACoW-IPAC2019-MOPTS050
[n]	R. Kato, G. I. Isoyama, S. K. Kashiwagi, S. Suemine, and T. Yamamoto, “Upgrade of the L-Band Linac at ISIR, Osaka University for a Far-Infrared FEL”, in Proc. FEL'04, Trieste, Italy, Aug.-Sep. 2004, paper TUPOS26, pp. XX-XX. 
[n]	T. Russ and Z. Radouch, “The Bates Linac Control System”, in Proc. LINAC'88, Williamsburg, VA, USA, Oct. 1988, paper WE3-42, pp. 418-420. 
[n]	J. C. Herrera and E. G. Gill, “Closed Orbit Correction in the AGS”, in Proc. PAC'73, San Francisco, CA, USA, Mar. 1973, pp. 872-875. 
[n]	P. Bellomo, T. Jackson, and D. Shimer, “Progress on PEP-II Magnet Power Conversion System”, in Proc. EPAC'96, Sitges, Spain, Jun. 1996, paper MOP090G, pp. 2346-2348. 
[n]	E. Wang et al., “Heat Load of a P-Doped GaAs Photocathode in an SRF Electron Gun”, in Proc. IPAC'10, Kyoto, Japan, May 2010, paper TUPEC024, pp. 1767-1769. 
[n]	B. Cheymol and A. Ponton, “Accuracy Determination of the ESS MEBT Emittance Measurements”, in Proc. LINAC'14, Geneva, Switzerland, Aug.-Sep. 2014, paper TUPP039, pp. 519-521. 
[n]	K. Kanazawa and Y. Suetsugu, “Development of a Bellows Assembly with RF-Shield for KEKB”, in Proc. EPAC'96, Sitges, Spain, Jun. 1996, paper WEP068G, pp. 1072-1074. 
[n]	M. Pekeler, W. Anders, S. Bauer, J. Knobloch, W.-D. M??ller, and P. vom Stein, “Performance of TESLA Cavities After Fabrication and Preparation in Industry”, in Proc. PAC'05, Knoxville, TN, USA, May 2005, paper WPAT088, pp. 4221-4223. 

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