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[n] I. V. Bazarov et al., “Initial Beam Results from the Cornell High-Current ERL Injector Prototype”, in Proc. PAC'09, Vancouver, Canada, May 2009, paper TU2GRI01, pp. 683-687.
[n] T.-C. Yu et al., “Adaptive Control of Klystron Operation Parameters for Energy Saving at Storage Ring of TPS”, in Proc. IPAC'21, Campinas, Brazil, May 2021, pp. 3748-3751. doi:10.18429/JACoW-IPAC2021-THXC07
[n] K. L. F. Bane, C. Adolphsen, A. Chao, and Z. Li, “A Study of Resonant Excitation of Longitudinal HOMs in the Cryomodules of LCLS-II”, in Proc. SRF'15, Whistler, Canada, Sep. 2015, paper THPB007, pp. 1073-1077.
[n] G. Wu, “Overview on Magnetic Field Management and Shielding in High Q Modules”, in Proc. SRF'15, Whistler, Canada, Sep. 2015, paper THBA06, pp. 1043-1048.
[n] Y. Hashimoto, T. Toyama, T. M. Mitsuhashi, M. Tejima, and S. Otsu, “A Development of High Sensitive Beam Profile Monitor using Multi-Screen”, in Proc. IBIC'13, Oxford, UK, Sep. 2013, paper TUCL2, pp. 338-341.
[n] G. H. Hoffstaetter, “An ERL-Driven Intense Compton Source Above 100 keV and Other ERL Applications”, presented at the IPAC'22, Bangkok, Thailand, Jun. 2022, paper TUIZGD1, unpublished.
[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] T. S. Duh, “THE CURRENT STATUS AND FUTURE PROSPECTS OF TR 30/15 H-/DCYCLOTRON FACILITY AT INER IN TAIWAN”, in Proc. Cyclotrons'04, Tokyo, Japan, Oct. 2004, paper 18P20, pp. XX-XX.
[n] S. Kazakov, B. M. Hanna, and O. V. Pronitchev, “Testing of 325 MHz Couplers at Test Stand in Resonance Mode”, in Proc. SRF'15, Whistler, Canada, Sep. 2015, paper THPB098, pp. 1376-1378.
[n] C. I. Clarke et al., “FACET: SLAC's New User Facility”, in Proc. IPAC'12, New Orleans, LA, USA, May 2012, paper WEPPP010, pp. 2741-2743.
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References
- I. V. Bazarov et al., “Initial Beam Results from the Cornell High-Current ERL Injector Prototype”, in Proc. 23rd Particle Accelerator Conf. (PAC'09), Vancouver, Canada, May 2009, paper TU2GRI01, pp. 683-687.
- T.-C. Yu et al., “Adaptive Control of Klystron Operation Parameters for Energy Saving at Storage Ring of TPS”, in Proc. 12th Int. Particle Accelerator Conf. (IPAC'21), Campinas, Brazil, May 2021, pp. 3748-3751.
- K. L. F. Bane, C. Adolphsen, A. Chao, and Z. Li, “A Study of Resonant Excitation of Longitudinal HOMs in the Cryomodules of LCLS-II”, in Proc. 17th Int. Conf. RF Superconductivity (SRF'15), Whistler, Canada, Sep. 2015, paper THPB007, pp. 1073-1077.
- G. Wu, “Overview on Magnetic Field Management and Shielding in High Q Modules”, in Proc. 17th Int. Conf. RF Superconductivity (SRF'15), Whistler, Canada, Sep. 2015, paper THBA06, pp. 1043-1048.
- Y. Hashimoto, T. Toyama, T. M. Mitsuhashi, M. Tejima, and S. Otsu, “A Development of High Sensitive Beam Profile Monitor using Multi-Screen”, in Proc. 2nd Int. Beam Instrumentation Conf. (IBIC'13), Oxford, UK, Sep. 2013, paper TUCL2, pp. 338-341.
- G. H. Hoffstaetter, “An ERL-Driven Intense Compton Source Above 100 keV and Other ERL Applications”, presented at the 13th Int. Particle Accelerator Conf. (IPAC'22), Bangkok, Thailand, Jun. 2022, paper TUIZGD1, unpublished.
- 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.
- T. S. Duh, “THE CURRENT STATUS AND FUTURE PROSPECTS OF TR 30/15 H-/DCYCLOTRON FACILITY AT INER IN TAIWAN”, in Proc. 17th Int. Conf. on Cyclotrons and Their Applications (Cyclotrons'04), Tokyo, Japan, Oct. 2004, paper 18P20, pp. XX-XX.
- S. Kazakov, B. M. Hanna, and O. V. Pronitchev, “Testing of 325 MHz Couplers at Test Stand in Resonance Mode”, in Proc. 17th Int. Conf. RF Superconductivity (SRF'15), Whistler, Canada, Sep. 2015, paper THPB098, pp. 1376-1378.
- C. I. Clarke et al., “FACET: SLAC's New User Facility”, in Proc. 3rd Int. Particle Accelerator Conf. (IPAC'12), New Orleans, LA, USA, May 2012, paper WEPPP010, pp. 2741-2743.
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