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[n] S. M. Lidia et al., “Initial Commissioning of NDCX-II”, in Proc. IPAC'12, New Orleans, LA, USA, May 2012, paper MOEPPB005, pp. 85-87.
[n] S. Y. Xu and S. Wang, “Combine Effects of Space Charge and Chromaticity Sextupoles at CSNS/RCS”, in Proc. IPAC'13, Shanghai, China, May 2013, paper WEPEA024, pp. 2552-2554.
[n] K. O. Kruchinin et al., “Simulation Results of the FETS Laserwire Emittance Scanner”, in Proc. IPAC'14, Dresden, Germany, Jun. 2014, pp. 3729-3731. doi:10.18429/JACoW-IPAC2014-THPME191
[n] T. Okada et al., “Development of Temperature and Magnetic Field Mapping System for Superconducting Cavities at KEK”, in Proc. SRF'19, Dresden, Germany, Jun.-Jul. 2019, pp. 583-585. doi:10.18429/JACoW-SRF2019-TUP060
[n] G. Joshi, V. Agarwal, F. Gerigk, G. Kumar, and M. Vretenar, “Development of RF System Model for CERN Linac2 Tanks”, in Proc. PAC'09, Vancouver, Canada, May 2009, paper WE5PFP065, pp. 2156-2158.
[n] Z. J. Wang et al., “The Status of CiADS Superconducting LINAC”, in Proc. IPAC'19, Melbourne, Australia, May 2019, pp. 994-997. doi:10.18429/JACoW-IPAC2019-MOPTS059
[n] Q. Chen et al., “SSPA upgrade plan design for CiADS”, in Proc. IPAC'19, Melbourne, Australia, May 2019, pp. 990-993. doi:10.18429/JACoW-IPAC2019-MOPTS057
[n] R. A. Bosch, J. J. Bisognano, and K. J. Kleman, “Robinson Modes at Aladdin”, in Proc. PAC'03, Portland, OR, USA, May 2003, paper RPPB062, pp. 3147-3149.
[n] C. Reece, P. Kushnick, and T. Powers, “An Automated RF Control and Data Acquisition System for Testing Superconducting RF Cavities”, in Proc. PAC'91, San Francisco, CA, USA, May 1991, pp. 1508-1511.
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References
- S. M. Lidia et al., “Initial Commissioning of NDCX-II”, in Proc. 3rd Int. Particle Accelerator Conf. (IPAC'12), New Orleans, LA, USA, May 2012, paper MOEPPB005, pp. 85-87.
- S. Y. Xu and S. Wang, “Combine Effects of Space Charge and Chromaticity Sextupoles at CSNS/RCS”, in Proc. 4th Int. Particle Accelerator Conf. (IPAC'13), Shanghai, China, May 2013, paper WEPEA024, pp. 2552-2554.
- K. O. Kruchinin et al., “Simulation Results of the FETS Laserwire Emittance Scanner”, in Proc. 5th Int. Particle Accelerator Conf. (IPAC'14), Dresden, Germany, Jun. 2014, pp. 3729-3731.
- T. Okada et al., “Development of Temperature and Magnetic Field Mapping System for Superconducting Cavities at KEK”, in Proc. 19th Int. Conf. RF Superconductivity (SRF'19), Dresden, Germany, Jun.-Jul. 2019, pp. 583-585.
- G. Joshi, V. Agarwal, F. Gerigk, G. Kumar, and M. Vretenar, “Development of RF System Model for CERN Linac2 Tanks”, in Proc. 23rd Particle Accelerator Conf. (PAC'09), Vancouver, Canada, May 2009, paper WE5PFP065, pp. 2156-2158.
- Z. J. Wang et al., “The Status of CiADS Superconducting LINAC”, in Proc. 10th Int. Particle Accelerator Conf. (IPAC'19), Melbourne, Australia, May 2019, pp. 994-997.
- Q. Chen et al., “SSPA upgrade plan design for CiADS”, in Proc. 10th Int. Particle Accelerator Conf. (IPAC'19), Melbourne, Australia, May 2019, pp. 990-993.
- R. A. Bosch, J. J. Bisognano, and K. J. Kleman, “Robinson Modes at Aladdin”, in Proc. 20th Particle Accelerator Conf. (PAC'03), Portland, OR, USA, May 2003, paper RPPB062, pp. 3147-3149.
- C. Reece, P. Kushnick, and T. Powers, “An Automated RF Control and Data Acquisition System for Testing Superconducting RF Cavities”, in Proc. 14th Particle Accelerator Conf. (PAC'91), San Francisco, CA, USA, May 1991, pp. 1508-1511.
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