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Published June 2007 | Published
Book Section - Chapter Open

Resolution of a high performance cavity beam position monitor system

Abstract

International Linear Collider (ILC) interaction region beam sizes and component position stability requirements will be as small as a few nanometers. It is important to the ILC design effort to demonstrate that these tolerances can be achieved - ideally using beam-based stability measurements. It has been estimated that RF cavity beam position monitors (BPMs) could provide position measurement resolutions of less than one nanometer and could form the basis of the desired beam-based stability measurement. We have developed a high resolution RF cavity BPM system. A triplet of these BPMs has been installed in the extraction line of the KEK Accelerator Test Facility (ATF) for testing with its ultra-low emittance beam. A metrology system for the three BPMs was recently installed. This system employed optical encoders to measure each BPM's position and orientation relative to a zero-coefficient of thermal expansion carbon fiber frame and has demonstrated that the three BPMs behave as a rigid-body to less than 5 nm. To date, we have demonstrated a BPM resolution of less than 20 nm over a dynamic range of +/- 20 microns.

Additional Information

© 2007 IEEE. This work was performed under the auspices of the U.S. Department of Energy by Univeristy of California Lawrence Livermore National Laboratory under contract No. W-7405-Eng-48, by University of California Lawrence Berkeley National Laboratory under contract No. DE-FG02-03ER41279, and by the Stanford Linear Accelerator Center under contract No. DE-AC02-76SF00515. This work was supported by the National Science Foundation, by the Japan-USA Collaborative Research Grant, Grant-in-Aid for Scientific Research from the Japan Society for the Promotion of Science, and by the Commission of the European Communities under the 6th Framework Programme "Structuring the European Research Area," contract number RIDS-011899.

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August 19, 2023
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