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Author: A. Rowe


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Reference
M. P. Kelly et al., “A Joint ANL/FNAL Cavity Surface Processing Facility”, in Proc. 12th Int. Conf. RF Superconductivity (SRF'05), Ithaca, NY, USA, Jul. 2005, paper THP11, pp. 478-480.
T. Khabiboulline et al., “Recent Results of Testing 3-cell 3.9 GHz Accelerating Cavity at Fermilab”, in Proc. 12th Int. Conf. RF Superconductivity (SRF'05), Ithaca, NY, USA, Jul. 2005, paper TUP14, pp. 267-267.
R. Carcagno, L. Bellantoni, T. Berenc, H. Edwards, D. Orris, and A. Rowe, “Microphonics Detuning Compensation in 3.9 GHz Superconducting RF Cavities”, in Proc. 11th Workshop RF Superconductivity (SRF'03), Lübeck, Germany, Sep. 2003, paper THP39, pp. 726-729.
L. Bellantoni, H. Edwards, T. Khabiboulline, and A. Rowe, “Field Flatness Tuning of TM110 Mode Cavities With Closely Spaced Modes”, in Proc. 11th Workshop RF Superconductivity (SRF'03), Lübeck, Germany, Sep. 2003, paper TUP01, pp. 265-268.
Y. Tereshkin, C. Boffo, G. Davis, H. Edwards, and A. Rowe, “BCP Processing Facility”, in Proc. 11th Workshop RF Superconductivity (SRF'03), Lübeck, Germany, Sep. 2003, paper TUP47, pp. 447-450.
M. Champion et al., “Engineering, Design and Prototype Tests of a 3.9 GHz Transverse-Mode Superconducting Cavity for a Radiofrequency-Separated Kaon Beam”, in Proc. 19th Particle Accelerator Conf. (PAC'01), Chicago, IL, USA, Jun. 2001, paper MPPH044, pp. 867-869.
G. Wu et al., “ECR Plasma Cleaning: An In-situ Processing Technique for RF Cavities”, in Proc. 13th Int. Conf. RF Superconductivity (SRF'07), Beijing, China, Oct. 2007, paper TUP49, pp. XX-XX.
C. Cooper, G. Galasso, A. Rowe, and C. Boffo, “Optimization of BCP Processing of Elliptical NB SRF Cavities”, in Proc. 13th Int. Conf. RF Superconductivity (SRF'07), Beijing, China, Oct. 2007, paper TUP70, pp. XX-XX.
R. Carcagno et al., “Commissioning and early operating experience with the Fermilab horizontal test facility”, in Proc. 13th Int. Conf. RF Superconductivity (SRF'07), Beijing, China, Oct. 2007, paper WEP14, pp. XX-XX.
E. Harms et al., “Status of 3.9 GHz superconducting RF cavity technology at Fermilab”, in Proc. 13th Int. Conf. RF Superconductivity (SRF'07), Beijing, China, Oct. 2007, paper WEP41, pp. XX-XX.


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