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Innovative lab on fiber dosimeters for ionizing radiation monitoring at ultra-high doses

We report on a innovative Lab on Fiber (LOF) dosimeter for ionizing radiation monitoring at ultra-high doses. The new dosimeter consists in a metallo-dielectric resonator at sub-wavelength scale supporting localized surface plasmon resonances realized on the optical fiber (OF) tip. The resonating st...

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Autores principales: Quero, Giuseppe, Vaiano, Patrizio, Sr, Fienga, Francesco, Sr, Giaquinto, Martino, Valentina, Di Meo, Gorine, Georgi, Casolaro, Pierluigi, Campajola, Luigi, Breglio, Giovanni, Crescitelli, Alessio, Esposito, Emanuela, Ricciardi, Armando, Cutolo, Antonello, Ravotti, Federico, Buontempo, Salvatore, Consales, Marco, Cusano, Andrea
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1117/12.2540323
http://cds.cern.ch/record/2834871
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author Quero, Giuseppe
Vaiano, Patrizio, Sr
Fienga, Francesco, Sr
Giaquinto, Martino
Valentina, Di Meo
Gorine, Georgi
Casolaro, Pierluigi
Campajola, Luigi
Breglio, Giovanni
Crescitelli, Alessio
Esposito, Emanuela
Ricciardi, Armando
Cutolo, Antonello
Ravotti, Federico
Buontempo, Salvatore
Consales, Marco
Cusano, Andrea
author_facet Quero, Giuseppe
Vaiano, Patrizio, Sr
Fienga, Francesco, Sr
Giaquinto, Martino
Valentina, Di Meo
Gorine, Georgi
Casolaro, Pierluigi
Campajola, Luigi
Breglio, Giovanni
Crescitelli, Alessio
Esposito, Emanuela
Ricciardi, Armando
Cutolo, Antonello
Ravotti, Federico
Buontempo, Salvatore
Consales, Marco
Cusano, Andrea
author_sort Quero, Giuseppe
collection CERN
description We report on a innovative Lab on Fiber (LOF) dosimeter for ionizing radiation monitoring at ultra-high doses. The new dosimeter consists in a metallo-dielectric resonator at sub-wavelength scale supporting localized surface plasmon resonances realized on the optical fiber (OF) tip. The resonating structure involves two gold gratings separated by a templated dielectric layer of poly(methyl methacrylate) (PMMA). Two LOF prototypes have been manufactured and exposed, at the IRRAD Proton Facility at CERN in Geneva, to 23 GeV protons for a total fluence of 0.67x10$^{16}$ protons/cm$^$, corresponding to an absorbed dose of 1.8 MGy. Experimental data demonstrate the "radiation resistance" feature of the LOF devices and a clear dependence of the reflected spectrum on the total dose, expressed by a cumulative blue-shift of ~1.4 nm of the resonance combined with a slight increase of 0.16 dBm in the reflected spectrum. According to the numerical analysis and the literature, the main phenomenon induced by exposure to proton beam and able to explain the measured spectral behavior is the reduction of the PMMA thickness. Preliminary results demonstrated the potentiality of the proposed platform as dosimeter at MGy dose levels for High Energy Physics (HEP) experiments.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-28348712022-09-29T19:56:20Zdoi:10.1117/12.2540323http://cds.cern.ch/record/2834871engQuero, GiuseppeVaiano, Patrizio, SrFienga, Francesco, SrGiaquinto, MartinoValentina, Di MeoGorine, GeorgiCasolaro, PierluigiCampajola, LuigiBreglio, GiovanniCrescitelli, AlessioEsposito, EmanuelaRicciardi, ArmandoCutolo, AntonelloRavotti, FedericoBuontempo, SalvatoreConsales, MarcoCusano, AndreaInnovative lab on fiber dosimeters for ionizing radiation monitoring at ultra-high dosesDetectors and Experimental TechniquesWe report on a innovative Lab on Fiber (LOF) dosimeter for ionizing radiation monitoring at ultra-high doses. The new dosimeter consists in a metallo-dielectric resonator at sub-wavelength scale supporting localized surface plasmon resonances realized on the optical fiber (OF) tip. The resonating structure involves two gold gratings separated by a templated dielectric layer of poly(methyl methacrylate) (PMMA). Two LOF prototypes have been manufactured and exposed, at the IRRAD Proton Facility at CERN in Geneva, to 23 GeV protons for a total fluence of 0.67x10$^{16}$ protons/cm$^$, corresponding to an absorbed dose of 1.8 MGy. Experimental data demonstrate the "radiation resistance" feature of the LOF devices and a clear dependence of the reflected spectrum on the total dose, expressed by a cumulative blue-shift of ~1.4 nm of the resonance combined with a slight increase of 0.16 dBm in the reflected spectrum. According to the numerical analysis and the literature, the main phenomenon induced by exposure to proton beam and able to explain the measured spectral behavior is the reduction of the PMMA thickness. Preliminary results demonstrated the potentiality of the proposed platform as dosimeter at MGy dose levels for High Energy Physics (HEP) experiments.oai:cds.cern.ch:28348712019
spellingShingle Detectors and Experimental Techniques
Quero, Giuseppe
Vaiano, Patrizio, Sr
Fienga, Francesco, Sr
Giaquinto, Martino
Valentina, Di Meo
Gorine, Georgi
Casolaro, Pierluigi
Campajola, Luigi
Breglio, Giovanni
Crescitelli, Alessio
Esposito, Emanuela
Ricciardi, Armando
Cutolo, Antonello
Ravotti, Federico
Buontempo, Salvatore
Consales, Marco
Cusano, Andrea
Innovative lab on fiber dosimeters for ionizing radiation monitoring at ultra-high doses
title Innovative lab on fiber dosimeters for ionizing radiation monitoring at ultra-high doses
title_full Innovative lab on fiber dosimeters for ionizing radiation monitoring at ultra-high doses
title_fullStr Innovative lab on fiber dosimeters for ionizing radiation monitoring at ultra-high doses
title_full_unstemmed Innovative lab on fiber dosimeters for ionizing radiation monitoring at ultra-high doses
title_short Innovative lab on fiber dosimeters for ionizing radiation monitoring at ultra-high doses
title_sort innovative lab on fiber dosimeters for ionizing radiation monitoring at ultra-high doses
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1117/12.2540323
http://cds.cern.ch/record/2834871
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