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Qualification and Calibration of Single-Mode Phosphosilicate Optical Fiber for Dosimetry at CERN

We report the results of several complementary radiation tests to qualify and calibrate a highly radiation sensitive Single-Mode (SM) Optical Fiber (OF) for distributed dosimetry application at CERN. The Radiation Induced Attenuation (RIA) is the physical phenomenon used to evaluate the Total Ionizi...

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Autores principales: Di Francesca, Diego, Li Vecchi, Gaetano, Girard, Sylvain, Morana, Adriana, Reghioua, Imene, Alessi, Antonino, Hoehr, Cornelia, Robin, Thierry, Kadi, Yacine, Brugger, Markus
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1109/JLT.2019.2915510
http://cds.cern.ch/record/2696399
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author Di Francesca, Diego
Li Vecchi, Gaetano
Girard, Sylvain
Morana, Adriana
Reghioua, Imene
Alessi, Antonino
Hoehr, Cornelia
Robin, Thierry
Kadi, Yacine
Brugger, Markus
author_facet Di Francesca, Diego
Li Vecchi, Gaetano
Girard, Sylvain
Morana, Adriana
Reghioua, Imene
Alessi, Antonino
Hoehr, Cornelia
Robin, Thierry
Kadi, Yacine
Brugger, Markus
author_sort Di Francesca, Diego
collection CERN
description We report the results of several complementary radiation tests to qualify and calibrate a highly radiation sensitive Single-Mode (SM) Optical Fiber (OF) for distributed dosimetry application at CERN. The Radiation Induced Attenuation (RIA) is the physical phenomenon used to evaluate the Total Ionizing Dose (TID) received by the OF sensor. The radiation response tests comprise online RIA in the Near InfraRed (NIR) domain under 60Co γ-rays, X-rays and proton irradiations, as well as post mortem Optical Attenuation (OA) measurement to evaluate long term fading effects of the RIA. In this paper, we focus on the effect of successive irradiations, dose rate dependence and effects related to the change of the irradiation temperature up to 45 °C. On the basis of our investigation, we conclude that the studied OF is a suitable TID sensor and that it is well adapted for distributed OF radiation dose sensing. It is fully compatible with commercially available SM Optical Time Domain Reflectometers, with some noticeable advantages with respect to previously developed systems based on multimode OFs. Finally, the OF we investigated has been selected for the distributed monitoring of low radiation dose levels at CERN in the injector chain (Proton Synchrotron Booster, Proton Synchrotron, Super Proton Synchrotron) and parts of the Large Hadron Collider (LHC).
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling oai-inspirehep.net-17605942019-11-05T15:21:21Zdoi:10.1109/JLT.2019.2915510http://cds.cern.ch/record/2696399engDi Francesca, DiegoLi Vecchi, GaetanoGirard, SylvainMorana, AdrianaReghioua, ImeneAlessi, AntoninoHoehr, CorneliaRobin, ThierryKadi, YacineBrugger, MarkusQualification and Calibration of Single-Mode Phosphosilicate Optical Fiber for Dosimetry at CERNAccelerators and Storage RingsWe report the results of several complementary radiation tests to qualify and calibrate a highly radiation sensitive Single-Mode (SM) Optical Fiber (OF) for distributed dosimetry application at CERN. The Radiation Induced Attenuation (RIA) is the physical phenomenon used to evaluate the Total Ionizing Dose (TID) received by the OF sensor. The radiation response tests comprise online RIA in the Near InfraRed (NIR) domain under 60Co γ-rays, X-rays and proton irradiations, as well as post mortem Optical Attenuation (OA) measurement to evaluate long term fading effects of the RIA. In this paper, we focus on the effect of successive irradiations, dose rate dependence and effects related to the change of the irradiation temperature up to 45 °C. On the basis of our investigation, we conclude that the studied OF is a suitable TID sensor and that it is well adapted for distributed OF radiation dose sensing. It is fully compatible with commercially available SM Optical Time Domain Reflectometers, with some noticeable advantages with respect to previously developed systems based on multimode OFs. Finally, the OF we investigated has been selected for the distributed monitoring of low radiation dose levels at CERN in the injector chain (Proton Synchrotron Booster, Proton Synchrotron, Super Proton Synchrotron) and parts of the Large Hadron Collider (LHC).oai:inspirehep.net:17605942019
spellingShingle Accelerators and Storage Rings
Di Francesca, Diego
Li Vecchi, Gaetano
Girard, Sylvain
Morana, Adriana
Reghioua, Imene
Alessi, Antonino
Hoehr, Cornelia
Robin, Thierry
Kadi, Yacine
Brugger, Markus
Qualification and Calibration of Single-Mode Phosphosilicate Optical Fiber for Dosimetry at CERN
title Qualification and Calibration of Single-Mode Phosphosilicate Optical Fiber for Dosimetry at CERN
title_full Qualification and Calibration of Single-Mode Phosphosilicate Optical Fiber for Dosimetry at CERN
title_fullStr Qualification and Calibration of Single-Mode Phosphosilicate Optical Fiber for Dosimetry at CERN
title_full_unstemmed Qualification and Calibration of Single-Mode Phosphosilicate Optical Fiber for Dosimetry at CERN
title_short Qualification and Calibration of Single-Mode Phosphosilicate Optical Fiber for Dosimetry at CERN
title_sort qualification and calibration of single-mode phosphosilicate optical fiber for dosimetry at cern
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/JLT.2019.2915510
http://cds.cern.ch/record/2696399
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