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Phase advance constraint in $K$ modulation for precise $\beta$-function determination

A precise determination of the β function at different locations of an accelerator is essential to allow accurate optics correction and to ensure high machine performance. The β function can only be measured directly at locations where beam position monitors are installed. For other locations, we re...

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Detalles Bibliográficos
Autores principales: Garcia-Morales, H, Hofer, M, Maclean, E H, van Riesen-Haupt, L, Tomás, R
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevAccelBeams.25.041002
http://cds.cern.ch/record/2811419
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author Garcia-Morales, H
Hofer, M
Maclean, E H
van Riesen-Haupt, L
Tomás, R
author_facet Garcia-Morales, H
Hofer, M
Maclean, E H
van Riesen-Haupt, L
Tomás, R
author_sort Garcia-Morales, H
collection CERN
description A precise determination of the β function at different locations of an accelerator is essential to allow accurate optics correction and to ensure high machine performance. The β function can only be measured directly at locations where beam position monitors are installed. For other locations, we rely on a K-modulation technique. However, this technique presents some limitations resulting in imprecise β values when the phase advance between the modulated quadrupole and the observation point is separated by 90°. To mitigate these limitations, we have introduced the same phase advance as an additional constraint in the K-modulation algorithm. In this paper, the improvement of the β measurement uncertainty is quantified for different optics configurations for both, the LHC and the proton synchrotron (PS) booster. The new algorithm is used to reanalyze measured data during van der Meer scans for luminosity calibration providing significantly more accurate results than obtained previously. Moreover, in the PS booster, this improvement has also reduced the uncertainty of the β function at different locations of the machine.
id cern-2811419
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
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spelling cern-28114192023-08-09T12:19:41Zdoi:10.1103/PhysRevAccelBeams.25.041002http://cds.cern.ch/record/2811419engGarcia-Morales, HHofer, MMaclean, E Hvan Riesen-Haupt, LTomás, RPhase advance constraint in $K$ modulation for precise $\beta$-function determinationAccelerators and Storage RingsA precise determination of the β function at different locations of an accelerator is essential to allow accurate optics correction and to ensure high machine performance. The β function can only be measured directly at locations where beam position monitors are installed. For other locations, we rely on a K-modulation technique. However, this technique presents some limitations resulting in imprecise β values when the phase advance between the modulated quadrupole and the observation point is separated by 90°. To mitigate these limitations, we have introduced the same phase advance as an additional constraint in the K-modulation algorithm. In this paper, the improvement of the β measurement uncertainty is quantified for different optics configurations for both, the LHC and the proton synchrotron (PS) booster. The new algorithm is used to reanalyze measured data during van der Meer scans for luminosity calibration providing significantly more accurate results than obtained previously. Moreover, in the PS booster, this improvement has also reduced the uncertainty of the β function at different locations of the machine.oai:cds.cern.ch:28114192022
spellingShingle Accelerators and Storage Rings
Garcia-Morales, H
Hofer, M
Maclean, E H
van Riesen-Haupt, L
Tomás, R
Phase advance constraint in $K$ modulation for precise $\beta$-function determination
title Phase advance constraint in $K$ modulation for precise $\beta$-function determination
title_full Phase advance constraint in $K$ modulation for precise $\beta$-function determination
title_fullStr Phase advance constraint in $K$ modulation for precise $\beta$-function determination
title_full_unstemmed Phase advance constraint in $K$ modulation for precise $\beta$-function determination
title_short Phase advance constraint in $K$ modulation for precise $\beta$-function determination
title_sort phase advance constraint in $k$ modulation for precise $\beta$-function determination
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevAccelBeams.25.041002
http://cds.cern.ch/record/2811419
work_keys_str_mv AT garciamoralesh phaseadvanceconstraintinkmodulationforprecisebetafunctiondetermination
AT hoferm phaseadvanceconstraintinkmodulationforprecisebetafunctiondetermination
AT macleaneh phaseadvanceconstraintinkmodulationforprecisebetafunctiondetermination
AT vanriesenhauptl phaseadvanceconstraintinkmodulationforprecisebetafunctiondetermination
AT tomasr phaseadvanceconstraintinkmodulationforprecisebetafunctiondetermination