Development of a solenoid magnet for emittance compensation

This paper explores the implementation of a solenoid field to achieve electron beam focusing and compensation of transverse emittance, which is generated from photocathode RF gun. An extensive investigation was conducted to determine the optimal solenoid magnetic field required for focusing an elect...

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Veröffentlicht in:Journal of physics. Conference series 2023-12, Vol.2653 (1), p.12034
Hauptverfasser: Jummunt, S, Sunwong, P, Prawanta, S, Kwankasem, A, Sooksrimuang, V, Promdee, W, Chaiyasit, K, Aim-O, P, Chunjarean, S, Klinkhieo, S
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container_issue 1
container_start_page 12034
container_title Journal of physics. Conference series
container_volume 2653
creator Jummunt, S
Sunwong, P
Prawanta, S
Kwankasem, A
Sooksrimuang, V
Promdee, W
Chaiyasit, K
Aim-O, P
Chunjarean, S
Klinkhieo, S
description This paper explores the implementation of a solenoid field to achieve electron beam focusing and compensation of transverse emittance, which is generated from photocathode RF gun. An extensive investigation was conducted to determine the optimal solenoid magnetic field required for focusing an electron bunch with a charge of 0.5 nC. A magnetic field strength of 0.25 T was chosen for emittance compensation, enabling the reduction of emittance to below 1.20 mm-mrad at the end of linac. The engineering design of the solenoid magnet for this system is presented in detail, ensuring precise dimensional tolerances within the range of ±30 µm. To ensure its effectiveness and reliability, extensive thermal and mechanical analyses were conducted. Currently, the prototype solenoid magnet is in the fabrication process.
doi_str_mv 10.1088/1742-6596/2653/1/012034
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subjects Compensation
Design engineering
Dimensional tolerances
Electron beams
Emittance
Field strength
Magnetic fields
Photocathodes
Physics
Solenoids
title Development of a solenoid magnet for emittance compensation
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