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Combined Temperature Radiation Effects and Influence of Drawing Conditions on Phosphorous‐Doped Optical Fibers

This work focuses on the effects of high dose ionizing radiation, up to 10 MGy(SiO$_2$), on P-doped multimode optical fibers (OF) at different irradiation temperatures. The investigation is based on two complementary experimental techniques: radiation-induced attenuation (RIA) measurements and elect...

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Autores principales: Di Francesca, Diego, Girard, Sylvain, Agnello, Simonpietro, Alessi, Antonino, Marcandella, Claude, Paillet, Philippe, Ouerdane, Youcef, Kadi, Yacine, Brugger, Markus, Boukenter, Aziz
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1002/pssa.201800553
http://cds.cern.ch/record/2805753
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author Di Francesca, Diego
Girard, Sylvain
Agnello, Simonpietro
Alessi, Antonino
Marcandella, Claude
Paillet, Philippe
Ouerdane, Youcef
Kadi, Yacine
Brugger, Markus
Boukenter, Aziz
author_facet Di Francesca, Diego
Girard, Sylvain
Agnello, Simonpietro
Alessi, Antonino
Marcandella, Claude
Paillet, Philippe
Ouerdane, Youcef
Kadi, Yacine
Brugger, Markus
Boukenter, Aziz
author_sort Di Francesca, Diego
collection CERN
description This work focuses on the effects of high dose ionizing radiation, up to 10 MGy(SiO$_2$), on P-doped multimode optical fibers (OF) at different irradiation temperatures. The investigation is based on two complementary experimental techniques: radiation-induced attenuation (RIA) measurements and electron paramagnetic resonance (EPR). The latter technique allows measuring the P1, P2, metastable-POHC and stable-POHC defects. Three OF samples are drawn from the same preform to evaluate the influence of changing their drawing conditions of the OFs on the radiation responses. This first study is performed under X-rays at room temperature. The results are compared with the ones of γ-rays irradiation. The latter allows to highlight a linear correlation between the NIR absorption band at 1.6 µm and the EPR signal of P1 defects, which supports D. Griscom's assignment of this absorption band to the P1 defect. The combined effect of ionizing radiation and irradiation temperature is also investigated extensively: online RIA measurements as well as post-mortem EPR measurements for irradiation temperatures ranging from 25 to 280 °C and doses up to 3 MGy are performed. Both RIA and EPR data show that increasing the irradiation temperature can lead to an increased production of point defects and associated absorption bands. This result is of great importance for the employment of P-doped OFs in radiation environment.
id cern-2805753
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling cern-28057532022-04-04T09:15:49Zdoi:10.1002/pssa.201800553http://cds.cern.ch/record/2805753engDi Francesca, DiegoGirard, SylvainAgnello, SimonpietroAlessi, AntoninoMarcandella, ClaudePaillet, PhilippeOuerdane, YoucefKadi, YacineBrugger, MarkusBoukenter, AzizCombined Temperature Radiation Effects and Influence of Drawing Conditions on Phosphorous‐Doped Optical FibersCondensed MatterThis work focuses on the effects of high dose ionizing radiation, up to 10 MGy(SiO$_2$), on P-doped multimode optical fibers (OF) at different irradiation temperatures. The investigation is based on two complementary experimental techniques: radiation-induced attenuation (RIA) measurements and electron paramagnetic resonance (EPR). The latter technique allows measuring the P1, P2, metastable-POHC and stable-POHC defects. Three OF samples are drawn from the same preform to evaluate the influence of changing their drawing conditions of the OFs on the radiation responses. This first study is performed under X-rays at room temperature. The results are compared with the ones of γ-rays irradiation. The latter allows to highlight a linear correlation between the NIR absorption band at 1.6 µm and the EPR signal of P1 defects, which supports D. Griscom's assignment of this absorption band to the P1 defect. The combined effect of ionizing radiation and irradiation temperature is also investigated extensively: online RIA measurements as well as post-mortem EPR measurements for irradiation temperatures ranging from 25 to 280 °C and doses up to 3 MGy are performed. Both RIA and EPR data show that increasing the irradiation temperature can lead to an increased production of point defects and associated absorption bands. This result is of great importance for the employment of P-doped OFs in radiation environment.oai:cds.cern.ch:28057532018
spellingShingle Condensed Matter
Di Francesca, Diego
Girard, Sylvain
Agnello, Simonpietro
Alessi, Antonino
Marcandella, Claude
Paillet, Philippe
Ouerdane, Youcef
Kadi, Yacine
Brugger, Markus
Boukenter, Aziz
Combined Temperature Radiation Effects and Influence of Drawing Conditions on Phosphorous‐Doped Optical Fibers
title Combined Temperature Radiation Effects and Influence of Drawing Conditions on Phosphorous‐Doped Optical Fibers
title_full Combined Temperature Radiation Effects and Influence of Drawing Conditions on Phosphorous‐Doped Optical Fibers
title_fullStr Combined Temperature Radiation Effects and Influence of Drawing Conditions on Phosphorous‐Doped Optical Fibers
title_full_unstemmed Combined Temperature Radiation Effects and Influence of Drawing Conditions on Phosphorous‐Doped Optical Fibers
title_short Combined Temperature Radiation Effects and Influence of Drawing Conditions on Phosphorous‐Doped Optical Fibers
title_sort combined temperature radiation effects and influence of drawing conditions on phosphorous‐doped optical fibers
topic Condensed Matter
url https://dx.doi.org/10.1002/pssa.201800553
http://cds.cern.ch/record/2805753
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