DOE OSTI · 1894801
Time-Resolved Beam Position Measurements for the Scorpius Multipulse Linear Induction Accelerator
Abstract
Beam position monitors (BPMs) provide time-resolved measurements of the current and centroid position of high-current electron beams in linear induction accelerators (LIAs). One of the types of detectors used in BPMs is the B-dot loop, which generates a signal from the EMF due to the time varying magnetic flux through the loop. If some of the boundaries of the loop are composed of thick metal walls with finite conductivity, the resulting signal must be corrected for the magnetic field diffusion into the metal. The theoretically predicted flux due to diffusion is in remarkable agreement with experimental measurements. Although accurate BPM measurements of beam current require correction of magnetic field diffusion, accurate measurement of beam position requires no correction. In this note, we present a theoretical derivation and the experimental validation of this result.
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Ekdahl, Jr., Carl August, Broste, William B., Johnson, Jeffrey. 2022-10-19. Time-Resolved Beam Position Measurements for the Scorpius Multipulse Linear Induction Accelerator. https://doi.org/10.2172/1894801
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