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The page numbers for some of these references could not be added automatically. You must provide the page numbers from the original proceedings which is located at JACoW.org, and substitute ‘pp. XX-XX’ with the correct page numbers.
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[n] N. Barov, M. Conde, W. Gai, and J. B. Rosenzweig, “Results of Blowout Regime Propagation Experiments of an Electron Beam in a Plasma”, in Proc. PAC'97, Vancouver, Canada, May 1997, paper 3PC005, pp. XX-XX.
[n] F. A. Vodopianov, “Matreshka High-Intensity Accelerator of Continuous Particle Beams”, in Proc. PAC'95, Dallas, TX, USA, May 1995, paper TAR02, pp. 799-800.
[n] P. R. Sarma, “Ideal Coil-Shape for Perfect Field in Superconducting Sextupole Magnets”, in Proc. APAC'07, Indore, India, Jan.-Feb. 2007, paper THPMA020, pp. 658-660.
[n] R. J. Temkin et al., “High Gradient Acceleration in a 17 GHz Photocathode RF Gun”, in Proc. PAC'93, Washington D.C., USA, Mar. 1993, pp. 2575-2578.
[n] L. Y. Zhou et al., “Design of an X-Band Photocathode for Tsinghua Thomson Scattering X-Ray Source”, in Proc. IPAC'17, Copenhagen, Denmark, May 2017, pp. 1497-1499. doi:10.18429/JACoW-IPAC2017-TUPAB076
[n] Z. Zhou, Y.-C. Du, W.-H. Huang, C.-X. Tang, and L. X. Yan, “Mega-electron-volt Ultrafast Electron Diffraction and Microscope at Tsinghua University”, in Proc. SAP'17, Jishou, China, Aug. 2017, pp. 134-137. doi:10.18429/JACoW-SAP2017-TUDH2
[n] F. Marhauser, K. H. Lee, and Z. Li, “Novel SRF Gun Design”, in Proc. SRF'13, Paris, France, Sep. 2013, paper MOP024, pp. 145-147.
[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.
[n] E. M. Nelson, K. R. Eppley, J. J. Petillo, and S. J. Humphries, “Comparisons of Particle Tracking and Charge Deposition Schemes for a Finite Element Gun Code”, in Proc. PAC'99, New York, NY, USA, Mar. 1999, paper THA77, pp. 2778-2780.
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References
- N. Barov, M. Conde, W. Gai, and J. B. Rosenzweig, “Results of Blowout Regime Propagation Experiments of an Electron Beam in a Plasma”, in Proc. 17th Particle Accelerator Conf. (PAC'97), Vancouver, Canada, May 1997, paper 3PC005, pp. XX-XX.
- F. A. Vodopianov, “Matreshka High-Intensity Accelerator of Continuous Particle Beams”, in Proc. 16th Particle Accelerator Conf. (PAC'95), Dallas, TX, USA, May 1995, paper TAR02, pp. 799-800.
- P. R. Sarma, “Ideal Coil-Shape for Perfect Field in Superconducting Sextupole Magnets”, in Proc. 4th Asian Particle Accelerator Conf. (APAC'07), Indore, India, Jan.-Feb. 2007, paper THPMA020, pp. 658-660.
- R. J. Temkin et al., “High Gradient Acceleration in a 17 GHz Photocathode RF Gun”, in Proc. 15th Particle Accelerator Conf. (PAC'93), Washington D.C., USA, Mar. 1993, pp. 2575-2578.
- L. Y. Zhou et al., “Design of an X-Band Photocathode for Tsinghua Thomson Scattering X-Ray Source”, in Proc. 8th Int. Particle Accelerator Conf. (IPAC'17), Copenhagen, Denmark, May 2017, pp. 1497-1499.
- Z. Zhou, Y.-C. Du, W.-H. Huang, C.-X. Tang, and L. X. Yan, “Mega-electron-volt Ultrafast Electron Diffraction and Microscope at Tsinghua University”, in Proc. 13th Symposium on Accelerator Physics (SAP'17), Jishou, China, Aug. 2017, pp. 134-137.
- F. Marhauser, K. H. Lee, and Z. Li, “Novel SRF Gun Design”, in Proc. 16th Int. Conf. RF Superconductivity (SRF'13), Paris, France, Sep. 2013, paper MOP024, pp. 145-147.
- T. J. Peterson et al., “LCLS-II 1.3 GHz Cryomodule Design ÔÇô Modified TESLA-Style Cryomodule for CW Operation”, in Proc. 17th Int. Conf. RF Superconductivity (SRF'15), Whistler, Canada, Sep. 2015, paper THPB119, pp. 1417-1421.
- E. M. Nelson, K. R. Eppley, J. J. Petillo, and S. J. Humphries, “Comparisons of Particle Tracking and Charge Deposition Schemes for a Finite Element Gun Code”, in Proc. 18th Particle Accelerator Conf. (PAC'99), New York, NY, USA, Mar. 1999, paper THA77, pp. 2778-2780.
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