Pulsed Electron Lenses for Space Charge Mitigation

Fuente: arXiv
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Hauptverfasser: Oeftiger, Adrian, Boine-Frankenheim, Oliver
Format: Preprint
Veröffentlicht: 2023
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author Oeftiger, Adrian
Boine-Frankenheim, Oliver
author_facet Oeftiger, Adrian
Boine-Frankenheim, Oliver
contents To produce the intense, high-quality hadron beams required by future nuclear and high-energy physics experiments, synchrotrons need to overcome a most prominent intensity limitation i.e., space charge. This Letter characterizes the potential of pulsed electron lenses in detailed 3D tracking simulations, key to which is a realistic machine and space charge model. The space charge limit, imparted by betatron resonances, is shown to be increased by up to 50% using a low symmetric number of electron lenses in application to the FAIR SIS100 synchrotron. Conceptually, a 100% increase is demonstrated with a larger number of electron lenses, which is found to rapidly saturate near the theoretical 2D limit.
format Preprint
id arxiv_https___arxiv_org_abs_2310_02365
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Pulsed Electron Lenses for Space Charge Mitigation
Oeftiger, Adrian
Boine-Frankenheim, Oliver
Accelerator Physics
To produce the intense, high-quality hadron beams required by future nuclear and high-energy physics experiments, synchrotrons need to overcome a most prominent intensity limitation i.e., space charge. This Letter characterizes the potential of pulsed electron lenses in detailed 3D tracking simulations, key to which is a realistic machine and space charge model. The space charge limit, imparted by betatron resonances, is shown to be increased by up to 50% using a low symmetric number of electron lenses in application to the FAIR SIS100 synchrotron. Conceptually, a 100% increase is demonstrated with a larger number of electron lenses, which is found to rapidly saturate near the theoretical 2D limit.
title Pulsed Electron Lenses for Space Charge Mitigation
topic Accelerator Physics
url https://arxiv.org/abs/2310.02365