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Multi-step lining-up correction of the CLIC trajectory

In the CLIC main linac it is very important to minimise the trajectory excursion and consequently the emittance dilution in order to obtain the required luminosity. Several algorithms have been proposed and lately the ballistic method has proved to be very effective. The trajectory correction method...

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Detalles Bibliográficos
Autores principales: D'Amico, T E, Guignard, Gilbert
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:http://cds.cern.ch/record/385712
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author D'Amico, T E
Guignard, Gilbert
author_facet D'Amico, T E
Guignard, Gilbert
author_sort D'Amico, T E
collection CERN
description In the CLIC main linac it is very important to minimise the trajectory excursion and consequently the emittance dilution in order to obtain the required luminosity. Several algorithms have been proposed and lately the ballistic method has proved to be very effective. The trajectory correction method described hereafter retains the main advantages of the latter while adding some interesting features. It is based on the separation of the unknown variables like the quadrupole misalignments, the offset and slope of the injection straight line and the misalignments of the beam position monitors (BPM). This is achieved by referring the trajectory relatively to the injection line and not to the average pre-alignment line and by using two trajectories each corresponding to slightly different quadrupole strengths. A reference straight line is then derived onto which the beam is bent by a kick obtained by moving the first quadrupole. The other quadrupoles are then aligned on that line. The quality of the correction depends mainly on the BPM's and micro-movers' resolution and on the stability of the quadrupole strengths. Simulation statistics show that the beam offset from the center-of the quadrupoles is typically 1.5 mu m r.m.s. (7 refs).
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
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spelling cern-3857122023-08-17T09:44:38Zhttp://cds.cern.ch/record/385712engD'Amico, T EGuignard, GilbertMulti-step lining-up correction of the CLIC trajectoryAccelerators and Storage RingsIn the CLIC main linac it is very important to minimise the trajectory excursion and consequently the emittance dilution in order to obtain the required luminosity. Several algorithms have been proposed and lately the ballistic method has proved to be very effective. The trajectory correction method described hereafter retains the main advantages of the latter while adding some interesting features. It is based on the separation of the unknown variables like the quadrupole misalignments, the offset and slope of the injection straight line and the misalignments of the beam position monitors (BPM). This is achieved by referring the trajectory relatively to the injection line and not to the average pre-alignment line and by using two trajectories each corresponding to slightly different quadrupole strengths. A reference straight line is then derived onto which the beam is bent by a kick obtained by moving the first quadrupole. The other quadrupoles are then aligned on that line. The quality of the correction depends mainly on the BPM's and micro-movers' resolution and on the stability of the quadrupole strengths. Simulation statistics show that the beam offset from the center-of the quadrupoles is typically 1.5 mu m r.m.s. (7 refs).CERN-PS-99-027-LPCLIC-Note-398oai:cds.cern.ch:3857121999-04-15
spellingShingle Accelerators and Storage Rings
D'Amico, T E
Guignard, Gilbert
Multi-step lining-up correction of the CLIC trajectory
title Multi-step lining-up correction of the CLIC trajectory
title_full Multi-step lining-up correction of the CLIC trajectory
title_fullStr Multi-step lining-up correction of the CLIC trajectory
title_full_unstemmed Multi-step lining-up correction of the CLIC trajectory
title_short Multi-step lining-up correction of the CLIC trajectory
title_sort multi-step lining-up correction of the clic trajectory
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/385712
work_keys_str_mv AT damicote multistepliningupcorrectionoftheclictrajectory
AT guignardgilbert multistepliningupcorrectionoftheclictrajectory