Rotating-Coil Measurement System for Small-Bore-Diameter Magnet Characterization

Author:

Lauria AnnaORCID,Arpaia PasqualeORCID,Buzio MarcoORCID,Gilardi AntonioORCID,Parvis MarcoORCID,Pentella MarianoORCID,Sabbatini Lucia,Simoni Enzo,Vannozzi Alessandro

Abstract

Rotating-coil measurement systems are widely used to measure the multipolar fields of particle accelerator magnets. This paper presents a rotating-coil measurement system that aims at providing a complete data set for the characterization of quadrupole magnets with small bore diameters (26 mm). The PCB magnetometer design represents a challenging goal for this type of transducer. It is characterized by an aspect ratio 30% higher than the state of the art, imposed by the reduced dimension of the external radius of the rotating shaft and the necessity of covering the entire magnet effective length (500 mm or higher). The system design required a novel design for the mechanical asset, also considering the innovation represented by the commercial carbon fiber tube, housing the PCB magnetometer. Moreover, the measurement system is based primarily on standard and commercially available components, with simplified control and post-processing software applications. The system and its components are cross-calibrated using a stretched-wire system and another rotating-coil system. The measurement precision is established in a measurement campaign performed on a quadrupole magnet characterized by an inner bore diameter of 45 mm.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference32 articles.

1. Bernius, C. Technical Report. HL-LHC Prospects from ATLAS and CMS, 2019.

2. Senes, E., Burrows, P., Corsini, R., and Pakuza, C. Beam Position Detection of a Short Electron Bunch in Presence of a Longer and More Intense Proton Bunch for the AWAKE Experiment, 2021.

3. Reducing parasitic resonances in particle accelerators components by broadband Higher–Order–Mode couplers;Arpaia;Measurement,2019

4. Walckiers, L. Magnetic measurement with coils and wires. arXiv, 2011.

5. Russenschuck, S. Field Computation for Accelerator Magnets: Analytical and Numerical Methods for Electromagnetic Design and Optimization, 2010.

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