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[n] J. Bradley, J. D. Crnkovic, D. Stratakis, and M. J. Syphers, “Initial Studies into Longitudinal Ionization Cooling for the Muon g-2 Experiment”, in Proc. IPAC'18, Vancouver, Canada, Apr.-May 2018, pp. 1522-1525. doi:10.18429/JACoW-IPAC2018-TUPMK015
[n] P. Martin et al., “Antiproton Acceleration in the Fermilab Main Ring and Tevatron”, in Proc. PAC'87, Washington D.C., USA, Mar. 1987, pp. 47-50.
[n] P. Snopok, D. V. Neuffer, and C. T. Rogers, “Energy Deposition and Shielding Study of the Front End for the Neutrino Factory”, in Proc. IPAC'13, Shanghai, China, May 2013, paper TUPFI067, pp. 1505-1507.
[n] C. D. Tunnell and C. T. Rogers, “MAUS: MICE Analysis User Software”, in Proc. IPAC'11, San Sebastian, Spain, Sep. 2011, paper MOPZ013, pp. 850-852.
[n] S. Holmes, “Status of the Fermilab Main Injector Project”, in Proc. EPAC'94, London, UK, Jun.-Jul. 1994, pp. 457-459.
[n] T. Nagata et al., “Development of High Purity Niobium Components and Cavities for SRF Accelerator”, in Proc. SRF'17, Lanzhou, China, Jul. 2017, pp. 814-816. doi:10.18429/JACoW-SRF2017-THPB034
[n] E. Prebys, S. A. Antipov, and H. Piekarz, “Proton Injection into the Fermilab Integrable Optics Test Accelerator (IOTA)”, in Proc. IPAC'15, Richmond, VA, USA, May 2015, pp. 2627-2629. doi:10.18429/JACoW-IPAC2015-WEPWA055
[n] J. N. Galayda, “The Linac Coherent Light Source-II Project”, in Proc. IPAC'14, Dresden, Germany, Jun. 2014, pp. 935-937. doi:10.18429/JACoW-IPAC2014-TUOCA01
[n] C. Darve et al., “The Superconducting Radio-Frequency Linear Accelerator Components for the European Spallation Source: First Test Results”, in Proc. LINAC'16, East Lansing, MI, USA, Sep. 2016, pp. 651-656. doi:10.18429/JACoW-LINAC2016-WE1A03
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References
- J. Bradley, J. D. Crnkovic, D. Stratakis, and M. J. Syphers, “Initial Studies into Longitudinal Ionization Cooling for the Muon g-2 Experiment”, in Proc. 9th Int. Particle Accelerator Conf. (IPAC'18), Vancouver, Canada, Apr.-May 2018, pp. 1522-1525.
- P. Martin et al., “Antiproton Acceleration in the Fermilab Main Ring and Tevatron”, in Proc. 12th Particle Accelerator Conf. (PAC'87), Washington D.C., USA, Mar. 1987, pp. 47-50.
- P. Snopok, D. V. Neuffer, and C. T. Rogers, “Energy Deposition and Shielding Study of the Front End for the Neutrino Factory”, in Proc. 4th Int. Particle Accelerator Conf. (IPAC'13), Shanghai, China, May 2013, paper TUPFI067, pp. 1505-1507.
- C. D. Tunnell and C. T. Rogers, “MAUS: MICE Analysis User Software”, in Proc. 2nd Int. Particle Accelerator Conf. (IPAC'11), San Sebastian, Spain, Sep. 2011, paper MOPZ013, pp. 850-852.
- S. Holmes, “Status of the Fermilab Main Injector Project”, in Proc. 4th European Particle Accelerator Conf. (EPAC'94), London, UK, Jun.-Jul. 1994, pp. 457-459.
- T. Nagata et al., “Development of High Purity Niobium Components and Cavities for SRF Accelerator”, in Proc. 18th Int. Conf. RF Superconductivity (SRF'17), Lanzhou, China, Jul. 2017, pp. 814-816.
- E. Prebys, S. A. Antipov, and H. Piekarz, “Proton Injection into the Fermilab Integrable Optics Test Accelerator (IOTA)”, in Proc. 6th Int. Particle Accelerator Conf. (IPAC'15), Richmond, VA, USA, May 2015, pp. 2627-2629.
- J. N. Galayda, “The Linac Coherent Light Source-II Project”, in Proc. 5th Int. Particle Accelerator Conf. (IPAC'14), Dresden, Germany, Jun. 2014, pp. 935-937.
- C. Darve et al., “The Superconducting Radio-Frequency Linear Accelerator Components for the European Spallation Source: First Test Results”, in Proc. 28th Linear Accelerator Conf. (LINAC'16), East Lansing, MI, USA, Sep. 2016, pp. 651-656.
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