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iPipe: An Innovative Fiber Optic Monitoring System for Beam Induced Heating on Accelerator Pipes
The iPipe project consists in the instrumentation, with Fiber Bragg Grating sensors (FBGs), of the beam pipe of the CMS experiment, which is part of the LHC. Being spectrally encoded, the FBGs are not sensitive to electromagnetic interference and broadband-radiation-induced losses. These characteris...
Autores principales: | , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2018
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.18429/JACoW-IPAC2018-WEPAL011 http://cds.cern.ch/record/2653717 |
_version_ | 1780961060504731648 |
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author | Fienga, Francesco Ball, Austin Beni, Noemi Breglio, Giovanni Buontempo, Salvatore Irace, Andrea Masullo, Maria Rosaria Salvant, Benoit Szillasi, Zoltan Vaccaro, Vittorio Zeuner, Wolfram |
author_facet | Fienga, Francesco Ball, Austin Beni, Noemi Breglio, Giovanni Buontempo, Salvatore Irace, Andrea Masullo, Maria Rosaria Salvant, Benoit Szillasi, Zoltan Vaccaro, Vittorio Zeuner, Wolfram |
author_sort | Fienga, Francesco |
collection | CERN |
description | The iPipe project consists in the instrumentation, with Fiber Bragg Grating sensors (FBGs), of the beam pipe of the CMS experiment, which is part of the LHC. Being spectrally encoded, the FBGs are not sensitive to electromagnetic interference and broadband-radiation-induced losses. These characteristics allow to realize long distance punctual sensing systems, capable to operate in harsh environments like the underground experimental and accelerator facilities at CERN. The iPipe secures the measurement of any deformation induced on the central beam pipe by any motion in the CMS detector due to element displacement or to magnetic field induced deformations. Moreover, the iPipe FBG temperature sensors represent a unique solution to monitor the beam pipe thermal behavior during the various operational and maintenance phases. This paper reports the use of the iPipe to measure the beam induced heating on the CMS vacuum chamber throughout 2016 and 2017. A first comparison between the measurements and the heat load predicted from beam induced RF heating due to the coupling impedance of the CMS pipe is also reported. |
id | oai-inspirehep.net-1690617 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2018 |
record_format | invenio |
spelling | oai-inspirehep.net-16906172019-09-30T06:29:59Zdoi:10.18429/JACoW-IPAC2018-WEPAL011http://cds.cern.ch/record/2653717engFienga, FrancescoBall, AustinBeni, NoemiBreglio, GiovanniBuontempo, SalvatoreIrace, AndreaMasullo, Maria RosariaSalvant, BenoitSzillasi, ZoltanVaccaro, VittorioZeuner, WolframiPipe: An Innovative Fiber Optic Monitoring System for Beam Induced Heating on Accelerator PipesAccelerators and Storage RingsDetectors and Experimental TechniquesThe iPipe project consists in the instrumentation, with Fiber Bragg Grating sensors (FBGs), of the beam pipe of the CMS experiment, which is part of the LHC. Being spectrally encoded, the FBGs are not sensitive to electromagnetic interference and broadband-radiation-induced losses. These characteristics allow to realize long distance punctual sensing systems, capable to operate in harsh environments like the underground experimental and accelerator facilities at CERN. The iPipe secures the measurement of any deformation induced on the central beam pipe by any motion in the CMS detector due to element displacement or to magnetic field induced deformations. Moreover, the iPipe FBG temperature sensors represent a unique solution to monitor the beam pipe thermal behavior during the various operational and maintenance phases. This paper reports the use of the iPipe to measure the beam induced heating on the CMS vacuum chamber throughout 2016 and 2017. A first comparison between the measurements and the heat load predicted from beam induced RF heating due to the coupling impedance of the CMS pipe is also reported.CERN-ACC-2018-088oai:inspirehep.net:16906172018 |
spellingShingle | Accelerators and Storage Rings Detectors and Experimental Techniques Fienga, Francesco Ball, Austin Beni, Noemi Breglio, Giovanni Buontempo, Salvatore Irace, Andrea Masullo, Maria Rosaria Salvant, Benoit Szillasi, Zoltan Vaccaro, Vittorio Zeuner, Wolfram iPipe: An Innovative Fiber Optic Monitoring System for Beam Induced Heating on Accelerator Pipes |
title | iPipe: An Innovative Fiber Optic Monitoring System for Beam Induced Heating on Accelerator Pipes |
title_full | iPipe: An Innovative Fiber Optic Monitoring System for Beam Induced Heating on Accelerator Pipes |
title_fullStr | iPipe: An Innovative Fiber Optic Monitoring System for Beam Induced Heating on Accelerator Pipes |
title_full_unstemmed | iPipe: An Innovative Fiber Optic Monitoring System for Beam Induced Heating on Accelerator Pipes |
title_short | iPipe: An Innovative Fiber Optic Monitoring System for Beam Induced Heating on Accelerator Pipes |
title_sort | ipipe: an innovative fiber optic monitoring system for beam induced heating on accelerator pipes |
topic | Accelerators and Storage Rings Detectors and Experimental Techniques |
url | https://dx.doi.org/10.18429/JACoW-IPAC2018-WEPAL011 http://cds.cern.ch/record/2653717 |
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