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Author: S. Virostek


References



Reference
A. Ladran et al., “Analysis of a Grid Window Structure for RF Cavities in a Muon Cooling Channel”, in Proc. 20th Particle Accelerator Conf. (PAC'03), Portland, OR, USA, May 2003, paper WPAE037, pp. 2023-2025.
A. Ratti et al., “Conceptual Design of the SNS RFQ”, in Proc. 19th Int. LINAC Conf. (LINAC'98), Chicago, IL, USA, Aug. 1998, paper MO4090, pp. 276-278.
A. Ratti et al., “Fabrication and Testing of the First Module of the SNS RFQ”, in Proc. 20th Linear Accelerator Conf. (LINAC'00), Monterey, CA, USA, Aug. 2000, paper THD05, pp. 911-913.
A. Ratti et al., “Results of The SNS Front End Commissioning at Berkeley Lab”, in Proc. 21st Linear Accelerator Conf. (LINAC'02), Gyeongju, Korea, Aug. 2002, paper TU483, pp. 509-511.
A. Ratti et al., “The SNS RFQ Commissioning”, in Proc. 21st Linear Accelerator Conf. (LINAC'02), Gyeongju, Korea, Aug. 2002, paper TU412, pp. 329-331.
A. Ratti et al., “The SNS RFQ Prototype Module”, in Proc. 18th Particle Accelerator Conf. (PAC'99), New York, NY, USA, Mar. 1999, paper MOP92, pp. 884-886.
D. Li et al., “A 201 MHz RF Cavity Design with Non-Stressed and Pre-Curved Be Windows for Muon Cooling Channels”, in Proc. 20th Particle Accelerator Conf. (PAC'03), Portland, OR, USA, May 2003, paper TPAB024, pp. 1243-1245.
J. L. Turner et al., “Vibration Studies of the Stanford Linear Accelerator”, in Proc. 16th Particle Accelerator Conf. (PAC'95), Dallas, TX, USA, May 1995, paper RPB04, pp. 665-667.
J. Staples and S. Virostek, “Analysis of Thermally Induced Frequency Shift for the Spallation Neutron Source RFQ”, in Proc. 20th Linear Accelerator Conf. (LINAC'00), Monterey, CA, USA, Aug. 2000, paper THD04, pp. 908-910.
J. Staples et al., “The SNS Front End Accelerator Systems”, in Proc. 19th Int. LINAC Conf. (LINAC'98), Chicago, IL, USA, Aug. 1998, paper MO4056, pp. 177-179.


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