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[n] D. Shu et al., “Conceptual Design of the Cavity Mechanical System for Cavity-Based X-Ray Free Electron Laser”, in Proc. MEDSI'20, Chicago, USA, Jul. 2021, pp. 103. doi:10.18429/JACoW-MEDSI2020-TUOA02
[n] F. Zimmermann et al., “Tune Shift Induced by Nonlinear Resistive Wall Wake Field of Flat Collimator”, in Proc. EPAC'06, Edinburgh, UK, Jun. 2006, paper THPCH061, pp. 2925-2927.
[n] G. M. Kazakevich, Y. U. Jeong, G. I. Kuznetsov, B. C. Lee, S.-H. Park, and V. M. Pavlov, “Injection System for Microtron-Based Terahertz FEL”, in Proc. FEL'05, Palo Alto, CA, USA, Aug. 2005, paper MOPP049, pp. XX-XX.
[n] K. J. Suthar et al., “Investigation of Various Fabrication Methods to Produce a 180GHz Corrugated Waveguide Structure in 2mm Diameter ?¡0.5m ?¡Long Copper Tube for the Compact Wakefield Accelerator for FEL Facility”, in Proc. NAPAC'19, Lansing, MI, USA, Sep. 2019, pp. 286-289. doi:10.18429/JACoW-NAPAC2019-MOPLO23
[n] J. R. J. Bennett et al., “The RIST Project at ISIS”, in Proc. EPAC'94, London, UK, Jun.-Jul. 1994, pp. 1415-1418.
[n] G. R. Murdoch, D. Crisp, S. Henderson, M. Holding, K. Potter, and T. Roseberry, “Design amp; Handling of High Activity Collimators amp;Ring Components on the SNS”, in Proc. EPAC'04, Lucerne, Switzerland, Jul. 2004, paper WEPLT172, pp. 2233-2235.
[n] Yu. P. Severgin and M. Z. Filimonov, “Insulating and Metal-Ceramic Materials for Particle Accelerators”, in Proc. PAC'93, Washington D.C., USA, Mar. 1993, pp. 2208-2210.
[n] O. F. Elcim, “Control System Using EPICS Tools at TARLA LINAC”, in Proc. PCaPAC'18, Hsinchu City, Taiwan, Oct. 2018, pp. 85-87. doi:10.18429/JACoW-PCaPAC2018-WEP23
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References
- D. Shu et al., “Conceptual Design of the Cavity Mechanical System for Cavity-Based X-Ray Free Electron Laser”, in Proc. 11th Mechanical Engineering Design of Synchrotron Radiation Equipment and Instrumentation Conf. (MEDSI'20), Chicago, USA, Jul. 2021, pp. 103.
- F. Zimmermann et al., “Tune Shift Induced by Nonlinear Resistive Wall Wake Field of Flat Collimator”, in Proc. 10th European Particle Accelerator Conf. (EPAC'06), Edinburgh, UK, Jun. 2006, paper THPCH061, pp. 2925-2927.
- G. M. Kazakevich, Y. U. Jeong, G. I. Kuznetsov, B. C. Lee, S.-H. Park, and V. M. Pavlov, “Injection System for Microtron-Based Terahertz FEL”, in Proc. 27th Int. Free Electron Laser Conf. (FEL'05), Palo Alto, CA, USA, Aug. 2005, paper MOPP049, pp. XX-XX.
- K. J. Suthar et al., “Investigation of Various Fabrication Methods to Produce a 180GHz Corrugated Waveguide Structure in 2mm Diameter ?¡0.5m ?¡Long Copper Tube for the Compact Wakefield Accelerator for FEL Facility”, in Proc. North American Particle Accelerator Conf. (NAPAC'19), Lansing, MI, USA, Sep. 2019, pp. 286-289.
- J. R. J. Bennett et al., “The RIST Project at ISIS”, in Proc. 4th European Particle Accelerator Conf. (EPAC'94), London, UK, Jun.-Jul. 1994, pp. 1415-1418.
- G. R. Murdoch, D. Crisp, S. Henderson, M. Holding, K. Potter, and T. Roseberry, “Design amp; Handling of High Activity Collimators amp;Ring Components on the SNS”, in Proc. 9th European Particle Accelerator Conf. (EPAC'04), Lucerne, Switzerland, Jul. 2004, paper WEPLT172, pp. 2233-2235.
- Yu. P. Severgin and M. Z. Filimonov, “Insulating and Metal-Ceramic Materials for Particle Accelerators”, in Proc. 15th Particle Accelerator Conf. (PAC'93), Washington D.C., USA, Mar. 1993, pp. 2208-2210.
- O. F. Elcim, “Control System Using EPICS Tools at TARLA LINAC”, in Proc. 12th International Workshop on Personal Computers and Particle Accelerator Controls (PCaPAC'18), Hsinchu City, Taiwan, Oct. 2018, pp. 85-87.
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