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Nonlinear Correction Schemes for the Phase 1 LHC Insertion Region Upgrade and Dynamic Aperture Studies

The Phase 1 LHC Interaction Region (IR) upgrade aims at increasing the machine luminosity essentially by reducing the beam size at the Interaction Point (IP). This requires a total redesign of the full IR. A large set of options has been proposed with conceptually different designs. This paper repor...

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Detalles Bibliográficos
Autores principales: de Maria, R, Giovannozzi, M, Tomás, R
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevSTAB.12.011002
http://cds.cern.ch/record/1159657
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author de Maria, R
Giovannozzi, M
Tomás, R
author_facet de Maria, R
Giovannozzi, M
Tomás, R
author_sort de Maria, R
collection CERN
description The Phase 1 LHC Interaction Region (IR) upgrade aims at increasing the machine luminosity essentially by reducing the beam size at the Interaction Point (IP). This requires a total redesign of the full IR. A large set of options has been proposed with conceptually different designs. This paper reports on a general approach for the compensation of the multipolar errors of the IR magnets in the design phase. The goal is to use the same correction approach for the different designs. The correction algorithm is based on the minimization of the differences between the IR transfer map with errors and the design IR transfer map. Its performance is tested using the dynamic aperture as figure of merit. The relation between map coefficients and resonance terms is also given as a way to target particular resonances by selecting the right map coefficients. The dynamic aperture is studied versus magnet aperture using recently established relations between magnetic errors and magnet aperture.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2009
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spelling cern-11596572019-09-30T06:29:59Zdoi:10.1103/PhysRevSTAB.12.011002http://cds.cern.ch/record/1159657engde Maria, RGiovannozzi, MTomás, RNonlinear Correction Schemes for the Phase 1 LHC Insertion Region Upgrade and Dynamic Aperture StudiesAccelerators and Storage RingsThe Phase 1 LHC Interaction Region (IR) upgrade aims at increasing the machine luminosity essentially by reducing the beam size at the Interaction Point (IP). This requires a total redesign of the full IR. A large set of options has been proposed with conceptually different designs. This paper reports on a general approach for the compensation of the multipolar errors of the IR magnets in the design phase. The goal is to use the same correction approach for the different designs. The correction algorithm is based on the minimization of the differences between the IR transfer map with errors and the design IR transfer map. Its performance is tested using the dynamic aperture as figure of merit. The relation between map coefficients and resonance terms is also given as a way to target particular resonances by selecting the right map coefficients. The dynamic aperture is studied versus magnet aperture using recently established relations between magnetic errors and magnet aperture.CERN-BE-2009-004oai:cds.cern.ch:11596572009-01-27
spellingShingle Accelerators and Storage Rings
de Maria, R
Giovannozzi, M
Tomás, R
Nonlinear Correction Schemes for the Phase 1 LHC Insertion Region Upgrade and Dynamic Aperture Studies
title Nonlinear Correction Schemes for the Phase 1 LHC Insertion Region Upgrade and Dynamic Aperture Studies
title_full Nonlinear Correction Schemes for the Phase 1 LHC Insertion Region Upgrade and Dynamic Aperture Studies
title_fullStr Nonlinear Correction Schemes for the Phase 1 LHC Insertion Region Upgrade and Dynamic Aperture Studies
title_full_unstemmed Nonlinear Correction Schemes for the Phase 1 LHC Insertion Region Upgrade and Dynamic Aperture Studies
title_short Nonlinear Correction Schemes for the Phase 1 LHC Insertion Region Upgrade and Dynamic Aperture Studies
title_sort nonlinear correction schemes for the phase 1 lhc insertion region upgrade and dynamic aperture studies
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevSTAB.12.011002
http://cds.cern.ch/record/1159657
work_keys_str_mv AT demariar nonlinearcorrectionschemesforthephase1lhcinsertionregionupgradeanddynamicaperturestudies
AT giovannozzim nonlinearcorrectionschemesforthephase1lhcinsertionregionupgradeanddynamicaperturestudies
AT tomasr nonlinearcorrectionschemesforthephase1lhcinsertionregionupgradeanddynamicaperturestudies