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Development and validation of a multilateration test bench for particle accelerator pre-alignment

The development and validation of a portable coordinate measurement solution for fiducialization of compact linear collider (CLIC) components is presented. This new solution addresses two limitations of high-accuracy state-of-the-art coordinate measuring machines, i.e. lack of portability and limite...

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Autores principales: Kamugasa, Solomon William, Rothacher, Markus, Gayde, Jean-Christophe, Mainaud Durand, Helene
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1361-6501/aa9f84
http://cds.cern.ch/record/2643943
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author Kamugasa, Solomon William
Rothacher, Markus
Gayde, Jean-Christophe
Mainaud Durand, Helene
author_facet Kamugasa, Solomon William
Rothacher, Markus
Gayde, Jean-Christophe
Mainaud Durand, Helene
author_sort Kamugasa, Solomon William
collection CERN
description The development and validation of a portable coordinate measurement solution for fiducialization of compact linear collider (CLIC) components is presented. This new solution addresses two limitations of high-accuracy state-of-the-art coordinate measuring machines, i.e. lack of portability and limited measurement volume. The solution is based on frequency scanning interferometry (FSI) distances and the multilateration coordinate measurement technique. The developments include a reference sphere for localizing the FSI optical fiber tip and a kinematic mount for repositioning the reference sphere with sub-micrometric repeatability. This design enables absolute distance measurements in different directions from the same point, which is essential for multilateration. A multilateration test bench built using these prototypes has been used to fiducialize a CLIC cavity beam position monitor and 420 mm-long main beam quadrupole magnet. The combined fiducialization uncertainty achieved is $3.5 \ \mu \text{m} \ (k  =  1)$, which is better than the CLIC $5 \ \mu \text{m} \ (k  =  1)$ uncertainty specification.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
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spelling oai-inspirehep.net-16570222019-09-30T06:29:59Zdoi:10.1088/1361-6501/aa9f84http://cds.cern.ch/record/2643943engKamugasa, Solomon WilliamRothacher, MarkusGayde, Jean-ChristopheMainaud Durand, HeleneDevelopment and validation of a multilateration test bench for particle accelerator pre-alignmentDetectors and Experimental TechniquesAccelerators and Storage RingsThe development and validation of a portable coordinate measurement solution for fiducialization of compact linear collider (CLIC) components is presented. This new solution addresses two limitations of high-accuracy state-of-the-art coordinate measuring machines, i.e. lack of portability and limited measurement volume. The solution is based on frequency scanning interferometry (FSI) distances and the multilateration coordinate measurement technique. The developments include a reference sphere for localizing the FSI optical fiber tip and a kinematic mount for repositioning the reference sphere with sub-micrometric repeatability. This design enables absolute distance measurements in different directions from the same point, which is essential for multilateration. A multilateration test bench built using these prototypes has been used to fiducialize a CLIC cavity beam position monitor and 420 mm-long main beam quadrupole magnet. The combined fiducialization uncertainty achieved is $3.5 \ \mu \text{m} \ (k  =  1)$, which is better than the CLIC $5 \ \mu \text{m} \ (k  =  1)$ uncertainty specification.oai:inspirehep.net:16570222018
spellingShingle Detectors and Experimental Techniques
Accelerators and Storage Rings
Kamugasa, Solomon William
Rothacher, Markus
Gayde, Jean-Christophe
Mainaud Durand, Helene
Development and validation of a multilateration test bench for particle accelerator pre-alignment
title Development and validation of a multilateration test bench for particle accelerator pre-alignment
title_full Development and validation of a multilateration test bench for particle accelerator pre-alignment
title_fullStr Development and validation of a multilateration test bench for particle accelerator pre-alignment
title_full_unstemmed Development and validation of a multilateration test bench for particle accelerator pre-alignment
title_short Development and validation of a multilateration test bench for particle accelerator pre-alignment
title_sort development and validation of a multilateration test bench for particle accelerator pre-alignment
topic Detectors and Experimental Techniques
Accelerators and Storage Rings
url https://dx.doi.org/10.1088/1361-6501/aa9f84
http://cds.cern.ch/record/2643943
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AT gaydejeanchristophe developmentandvalidationofamultilaterationtestbenchforparticleacceleratorprealignment
AT mainauddurandhelene developmentandvalidationofamultilaterationtestbenchforparticleacceleratorprealignment