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The LHC dynamic aperture

In 1996, the expected field errors in the dipoles and quadrupoles yielded a long-term dynamic aperture of some 8sigma at injection. The target was set to 12sigma to account for the limitations of our model (imperfections and dynamics). From scaling laws and tracking, a specification for the field im...

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Autor principal: Koutchouk, Jean-Pierre
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:http://cds.cern.ch/record/386687
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author Koutchouk, Jean-Pierre
author_facet Koutchouk, Jean-Pierre
author_sort Koutchouk, Jean-Pierre
collection CERN
description In 1996, the expected field errors in the dipoles and quadrupoles yielded a long-term dynamic aperture of some 8sigma at injection. The target was set to 12sigma to account for the limitations of our model (imperfections and dynamics). From scaling laws and tracking, a specification for the field imperfections yielding the target dynamic aperture was deduced. The gap between specification and expected errors is being bridged by i) an improvement of the dipole field quality, ii) a balance between geometric and persistent current errors, iii) additional correction circuits (a3 ,b4 ). With the goal in view, the emphasis has now turned to the sensitivity of the dynamic aperture to the optical parameters.The distortion of the dynamics at the lower amplitudes effectively reached by the particles is minimized by optimizing the distribution of the betatron phase advance. At collision energy, the dynamic aperture is limited by the field imperfections of the low-beta triplets, enhanced by the crossing angle. With correction of the most important aberrations, the dynamic aperture reaches the target set to 10sigma.
id cern-386687
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
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spelling cern-3866872023-05-31T13:23:56Zhttp://cds.cern.ch/record/386687engKoutchouk, Jean-PierreThe LHC dynamic apertureAccelerators and Storage RingsIn 1996, the expected field errors in the dipoles and quadrupoles yielded a long-term dynamic aperture of some 8sigma at injection. The target was set to 12sigma to account for the limitations of our model (imperfections and dynamics). From scaling laws and tracking, a specification for the field imperfections yielding the target dynamic aperture was deduced. The gap between specification and expected errors is being bridged by i) an improvement of the dipole field quality, ii) a balance between geometric and persistent current errors, iii) additional correction circuits (a3 ,b4 ). With the goal in view, the emphasis has now turned to the sensitivity of the dynamic aperture to the optical parameters.The distortion of the dynamics at the lower amplitudes effectively reached by the particles is minimized by optimizing the distribution of the betatron phase advance. At collision energy, the dynamic aperture is limited by the field imperfections of the low-beta triplets, enhanced by the crossing angle. With correction of the most important aberrations, the dynamic aperture reaches the target set to 10sigma.LHC-Project-Report-296CERN-LHC-Project-Report-296oai:cds.cern.ch:3866871999-04-23
spellingShingle Accelerators and Storage Rings
Koutchouk, Jean-Pierre
The LHC dynamic aperture
title The LHC dynamic aperture
title_full The LHC dynamic aperture
title_fullStr The LHC dynamic aperture
title_full_unstemmed The LHC dynamic aperture
title_short The LHC dynamic aperture
title_sort lhc dynamic aperture
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/386687
work_keys_str_mv AT koutchoukjeanpierre thelhcdynamicaperture
AT koutchoukjeanpierre lhcdynamicaperture