Non Linear Field Correction Effects on the Dynamic Aperture of the FCC-hh

The Future Circular Collider (FCC) design study aims to develop the designs of possible circular colliders in the post LHC era. In particular the FCC-hh will aim to produce proton-proton collisions at a center of mass energy of 100 TeV. Given the large beta functions and integrated length of the qua...

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Main Authors: Cruz Alaniz, E, Seryi, A, Maclean, E, Martin, R, Tomás, R
Format: Conference item
Published: JACoW 2017
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author Cruz Alaniz, E
Seryi, A
Maclean, E
Martin, R
Tomás, R
author_facet Cruz Alaniz, E
Seryi, A
Maclean, E
Martin, R
Tomás, R
author_sort Cruz Alaniz, E
collection OXFORD
description The Future Circular Collider (FCC) design study aims to develop the designs of possible circular colliders in the post LHC era. In particular the FCC-hh will aim to produce proton-proton collisions at a center of mass energy of 100 TeV. Given the large beta functions and integrated length of the quadrupoles of the final focus triplet the effect of systematic and random non linear errors in the magnets are expected to have a severe impact on the stability of the beam. Following the experience on the HL-LHC this work explores the implementation of non-linear correctors to minimize the resonance driving terms arising from the errors of the triplet. Dynamic aperture studies are then performed to study the impact of this correction.
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spelling oxford-uuid:410f07a6-c781-46c6-b2da-1ff24db32c7f2022-03-26T14:41:27ZNon Linear Field Correction Effects on the Dynamic Aperture of the FCC-hhConference itemhttp://purl.org/coar/resource_type/c_5794uuid:410f07a6-c781-46c6-b2da-1ff24db32c7fSymplectic Elements at OxfordJACoW2017Cruz Alaniz, ESeryi, AMaclean, EMartin, RTomás, RThe Future Circular Collider (FCC) design study aims to develop the designs of possible circular colliders in the post LHC era. In particular the FCC-hh will aim to produce proton-proton collisions at a center of mass energy of 100 TeV. Given the large beta functions and integrated length of the quadrupoles of the final focus triplet the effect of systematic and random non linear errors in the magnets are expected to have a severe impact on the stability of the beam. Following the experience on the HL-LHC this work explores the implementation of non-linear correctors to minimize the resonance driving terms arising from the errors of the triplet. Dynamic aperture studies are then performed to study the impact of this correction.
spellingShingle Cruz Alaniz, E
Seryi, A
Maclean, E
Martin, R
Tomás, R
Non Linear Field Correction Effects on the Dynamic Aperture of the FCC-hh
title Non Linear Field Correction Effects on the Dynamic Aperture of the FCC-hh
title_full Non Linear Field Correction Effects on the Dynamic Aperture of the FCC-hh
title_fullStr Non Linear Field Correction Effects on the Dynamic Aperture of the FCC-hh
title_full_unstemmed Non Linear Field Correction Effects on the Dynamic Aperture of the FCC-hh
title_short Non Linear Field Correction Effects on the Dynamic Aperture of the FCC-hh
title_sort non linear field correction effects on the dynamic aperture of the fcc hh
work_keys_str_mv AT cruzalanize nonlinearfieldcorrectioneffectsonthedynamicapertureofthefcchh
AT seryia nonlinearfieldcorrectioneffectsonthedynamicapertureofthefcchh
AT macleane nonlinearfieldcorrectioneffectsonthedynamicapertureofthefcchh
AT martinr nonlinearfieldcorrectioneffectsonthedynamicapertureofthefcchh
AT tomasr nonlinearfieldcorrectioneffectsonthedynamicapertureofthefcchh