A code for optimising triplet layout

One of the main challenges when designing final focus systems of particle accelerators is maximising the beam stay clear in the strong quadrupole magnets of the inner triplet. Moreover it is desirable to keep the quadrupoles in the inner triplet as short as possible for space and costs reasons but a...

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主要な著者: Van Riesen-Haupt, L, Seryi, A, Abelleira Fernandez, J, Cruz Alaniz, E
フォーマット: Conference item
出版事項: Joint Accelerator Conferences Website 2017
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author Van Riesen-Haupt, L
Seryi, A
Abelleira Fernandez, J
Cruz Alaniz, E
author_facet Van Riesen-Haupt, L
Seryi, A
Abelleira Fernandez, J
Cruz Alaniz, E
author_sort Van Riesen-Haupt, L
collection OXFORD
description One of the main challenges when designing final focus systems of particle accelerators is maximising the beam stay clear in the strong quadrupole magnets of the inner triplet. Moreover it is desirable to keep the quadrupoles in the inner triplet as short as possible for space and costs reasons but also to reduce chromaticity and simplify corrections schemes. An algorithm that explores the triplet parameter space to optimise both these aspects was written. It uses thin lenses as a first approximation for a broad parameter scan and MADX for more precise calculations. The thin lens algorithm is significantly faster than a full scan using MADX and relatively precise at indicating the approximate area where the optimum solution lies.
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spelling oxford-uuid:065aece6-be76-4a72-87f4-2b38fce5116a2022-03-26T09:02:03ZA code for optimising triplet layoutConference itemhttp://purl.org/coar/resource_type/c_5794uuid:065aece6-be76-4a72-87f4-2b38fce5116aSymplectic Elements at OxfordJoint Accelerator Conferences Website2017Van Riesen-Haupt, LSeryi, AAbelleira Fernandez, JCruz Alaniz, EOne of the main challenges when designing final focus systems of particle accelerators is maximising the beam stay clear in the strong quadrupole magnets of the inner triplet. Moreover it is desirable to keep the quadrupoles in the inner triplet as short as possible for space and costs reasons but also to reduce chromaticity and simplify corrections schemes. An algorithm that explores the triplet parameter space to optimise both these aspects was written. It uses thin lenses as a first approximation for a broad parameter scan and MADX for more precise calculations. The thin lens algorithm is significantly faster than a full scan using MADX and relatively precise at indicating the approximate area where the optimum solution lies.
spellingShingle Van Riesen-Haupt, L
Seryi, A
Abelleira Fernandez, J
Cruz Alaniz, E
A code for optimising triplet layout
title A code for optimising triplet layout
title_full A code for optimising triplet layout
title_fullStr A code for optimising triplet layout
title_full_unstemmed A code for optimising triplet layout
title_short A code for optimising triplet layout
title_sort code for optimising triplet layout
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AT seryia acodeforoptimisingtripletlayout
AT abelleirafernandezj acodeforoptimisingtripletlayout
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AT vanriesenhauptl codeforoptimisingtripletlayout
AT seryia codeforoptimisingtripletlayout
AT abelleirafernandezj codeforoptimisingtripletlayout
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