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Estimating Field Quality in Low-beta Superconducting Quadrupoles and its Impact on Beam Stability

Random components of field harmonics in superconducting quadrupoles are usually estimated by computing the effect of a random positioning of the coil blocks with an r.m.s. of 0.05 mm. Here, we review the experience acquired in the construction of 7 superconducting quadrupoles in the RHIC and in the...

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Autores principales: Todesco, E, Bellesia, B, Koutchouk, Jean-Pierre, Santoni, C
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:https://dx.doi.org/10.1109/PAC.2007.4440209
http://cds.cern.ch/record/1092115
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author Todesco, E
Bellesia, B
Koutchouk, Jean-Pierre
Santoni, C
author_facet Todesco, E
Bellesia, B
Koutchouk, Jean-Pierre
Santoni, C
author_sort Todesco, E
collection CERN
description Random components of field harmonics in superconducting quadrupoles are usually estimated by computing the effect of a random positioning of the coil blocks with an r.m.s. of 0.05 mm. Here, we review the experience acquired in the construction of 7 superconducting quadrupoles in the RHIC and in the LHC projects to estimate the reproducibility in the coil positioning. Post-processed data show that the reproducibility is around 0.020 mm r.m.s., and independent of the aperture. Using this result, we work out a scaling law for the random components as a function of the magnet aperture. As an application, we analyse the impact on geometrical aberrations of the expected field errors in presence of large beta functions in the triplet.
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institution Organización Europea para la Investigación Nuclear
language eng
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spelling cern-10921152023-05-31T13:21:37Zdoi:10.1109/PAC.2007.4440209http://cds.cern.ch/record/1092115engTodesco, EBellesia, BKoutchouk, Jean-PierreSantoni, CEstimating Field Quality in Low-beta Superconducting Quadrupoles and its Impact on Beam StabilityAccelerators and Storage RingsRandom components of field harmonics in superconducting quadrupoles are usually estimated by computing the effect of a random positioning of the coil blocks with an r.m.s. of 0.05 mm. Here, we review the experience acquired in the construction of 7 superconducting quadrupoles in the RHIC and in the LHC projects to estimate the reproducibility in the coil positioning. Post-processed data show that the reproducibility is around 0.020 mm r.m.s., and independent of the aperture. Using this result, we work out a scaling law for the random components as a function of the magnet aperture. As an application, we analyse the impact on geometrical aberrations of the expected field errors in presence of large beta functions in the triplet.LHC-PROJECT-Report-1061CERN-LHC-PROJECT-Report-1061oai:cds.cern.ch:10921152007
spellingShingle Accelerators and Storage Rings
Todesco, E
Bellesia, B
Koutchouk, Jean-Pierre
Santoni, C
Estimating Field Quality in Low-beta Superconducting Quadrupoles and its Impact on Beam Stability
title Estimating Field Quality in Low-beta Superconducting Quadrupoles and its Impact on Beam Stability
title_full Estimating Field Quality in Low-beta Superconducting Quadrupoles and its Impact on Beam Stability
title_fullStr Estimating Field Quality in Low-beta Superconducting Quadrupoles and its Impact on Beam Stability
title_full_unstemmed Estimating Field Quality in Low-beta Superconducting Quadrupoles and its Impact on Beam Stability
title_short Estimating Field Quality in Low-beta Superconducting Quadrupoles and its Impact on Beam Stability
title_sort estimating field quality in low-beta superconducting quadrupoles and its impact on beam stability
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/PAC.2007.4440209
http://cds.cern.ch/record/1092115
work_keys_str_mv AT todescoe estimatingfieldqualityinlowbetasuperconductingquadrupolesanditsimpactonbeamstability
AT bellesiab estimatingfieldqualityinlowbetasuperconductingquadrupolesanditsimpactonbeamstability
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AT santonic estimatingfieldqualityinlowbetasuperconductingquadrupolesanditsimpactonbeamstability