CERN Accelerating science

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1.
Characterization of Lab-on-Fiber-based dosimeters in ultra-high dose radiation fields / Vaiano, Patrizio (Sannio U.) ; Quero, Giuseppe (Sannio U.) ; Fienga, Francesco (Naples U. ; CERN) ; Di Meo, Valentina (INFN, Naples) ; Casolaro, Pierluigi (Bern U., LHEP) ; Campajola, Luigi (INFN, Naples) ; Breglio, Giovanni (Naples U. ; CERN) ; Crescitelli, Alessio (INFN, Naples) ; Esposito, Emanuela (INFN, Naples) ; Cutolo, Antonello (Naples U.) et al.
Next generation High Energy Physics (HEP) accelerators will require new devices and technologies capable of operating in extreme environments characterized by ultra-high radiation doses up to the MGy levels. To this aim, we report on an innovative Lab-On-Fiber (LOF) probe for the real-time dose monitoring. [...]
2023 - 9 p. - Published in : Opt. Laser Technol. 161 (2023) 109177 Fulltext: PDF;
2.
Innovative Photonic Sensors for Safety and Security, Part III: Environment, Agriculture and Soil Monitoring / Breglio, Giovanni (Naples U. ; CERN) ; Bernini, Romeo (CNR IRPI, Perugia) ; Berruti, Gaia Maria (Sannio U.) ; Bruno, Francesco Antonio (Sannio U.) ; Buontempo, Salvatore (CERN ; INFN, Naples) ; Campopiano, Stefania (Naples U.) ; Catalano, Ester (Rome U., Tor Vergata ; INFN, Naples) ; Consales, Marco (Sannio U.) ; Coscetta, Agnese (Rome U., Tor Vergata) ; Cutolo, Antonello (Naples U.) et al.
In order to complete this set of three companion papers, in this last, we focus our attention on environmental monitoring by taking advantage of photonic technologies. After reporting on some configurations useful for high precision agriculture, we explore the problems connected with soil water content measurement and landslide early warning. [...]
2023 - 39 p. - Published in : Sensors 23 (2023) 3187 Fulltext: PDF;
3.
Innovative Photonic Sensors for Safety and Security, Part II: Aerospace and Submarine Applications / Cutolo, Antonello (Naples U.) ; Bernini, Romeo (CNR IRPI, Perugia) ; Berruti, Gaia Maria (Sannio U.) ; Breglio, Giovanni (Naples U. ; CERN) ; Bruno, Francesco Antonio (Sannio U.) ; Buontempo, Salvatore (CERN ; INFN, Naples) ; Catalano, Ester (Rome U., Tor Vergata ; INFN, Naples) ; Consales, Marco (Sannio U.) ; Coscetta, Agnese (Rome U., Tor Vergata) ; Cusano, Andrea (Sannio U.) et al.
The employability of photonics technology in the modern era’s highly demanding and sophisticated domain of aerospace and submarines has been an appealing challenge for the scientific communities. In this paper, we review our main results achieved so far on the use of optical fiber sensors for safety and security in innovative aerospace and submarine applications. [...]
2023 - 27 p. - Published in : Sensors 23 (2023) 2417 Fulltext: PDF;
4.
Innovative Photonic Sensors for Safety and Security, Part I: Fundamentals, Infrastructural and Ground Transportations / Minardo, Aldo (Rome U., Tor Vergata) ; Bernini, Romeo (CNR IRPI, Perugia) ; Berruti, Gaia Maria (Sannio U.) ; Breglio, Giovanni (Naples U.) ; Bruno, Francesco Antonio (Sannio U.) ; Buontempo, Salvatore (INFN, Naples ; CERN) ; Campopiano, Stefania (Naples U.) ; Catalano, Ester (Rome U., Tor Vergata ; INFN, Naples) ; Consales, Marco (Sannio U.) ; Coscetta, Agnese (Rome U., Tor Vergata) et al.
Our group, involving researchers from different universities in Campania, Italy, has been working for the last twenty years in the field of photonic sensors for safety and security in healthcare, industrial and environment applications. This is the first in a series of three companion papers. [...]
2023 - 32 p. - Published in : Sensors 23 (2023) 2558 Fulltext: PDF;
5.
Innovative lab on fiber dosimeters for ionizing radiation monitoring at ultra-high doses / Quero, Giuseppe ; Vaiano, Patrizio, Sr (Sannio U.) ; Fienga, Francesco, Sr (INFN, Naples ; Ecole Polytechnique, Lausanne) ; Giaquinto, Martino (Sannio U.) ; Valentina, Di Meo (IMM, Bologna) ; Gorine, Georgi (CERN ; Ecole Polytechnique, Lausanne) ; Casolaro, Pierluigi (INFN, Naples) ; Campajola, Luigi (INFN, Naples ; Naples U.) ; Breglio, Giovanni (Naples U. ; INFN, Naples ; CERN) ; Crescitelli, Alessio (IMM, Bologna) et al.
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. [...]
2019 - 4 p. - Published in : Proc. SPIE 11199 (2019) 111990I
In : 7th European Workshop on Optical Fibre Sensors, 1 - 4 Oct 2019, Limassol, Cyprus, pp.111990I
6.
Radiation Sensitivity of Long Period Gratings written in B-Ge doped fiber under proton irradiation at CERN / Berruti, Gaia Maria (CERN) ; Pimentel Das Neves, Tiago Filipe (CERN ; Ecole Polytechnique, Lausanne) ; Consales, Marco (Sannio U.) ; Vaiano, Patrizio (Sannio U.) ; Quero, Giuseppe (Sannio U.) ; Petagna, Paolo (CERN) ; Cusano, Andrea (Sannio U.)
In this contribution, the response of a Long Period Grating (LPG) inscribed in a B/Ge co-doped optical fiber exposed to proton irradiation is presented for the first time to the best of our knowledge. The experiment was performed in the proton irradiation facility at the European Organization for Nuclear Research (CERN) and lasted 146 hours. [...]
2018 - Published in : 10.1364/ofs.2018.wf57
In : 26th International Conference on Optical Fiber Sensors, Lausanne, Switzerland, 24 - 28 Sep 2018, pp.WF57
7.
Analysis of uncoated LPGs written in B-Ge doped fiber under proton irradiation for sensing applications at CERN / Berruti, Gaia Maria (CERN ; Sannio U.) ; Vaiano, Patrizio (Sannio U.) ; Quero, Giuseppe (Sannio U.) ; Pimentel Das Neves, Tiago Filipe (CERN ; Ecole Polytechnique, Lausanne) ; Boniello, Alessandra (Sannio U.) ; Consales, Marco (Sannio U.) ; Petagna, Paolo (CERN) ; Cusano, Andrea (Sannio U.)
In this contribution, a complete dissertation concerning the behavior of a Long Period Grating (LPG) inscribed in a B-Ge co-doped optical fiber by means of an excimer laser and exposed to proton irradiation during a recent extensive campaign performed at the European Organization for Nuclear Research (CERN) with a fluence of 4.4·10$^{15}$ p∙cm$^{−2}$ is provided. The experimental results have been thus combined for the first time to the best of our knowledge with numerical simulations in order to estimate the variations of the major parameters affecting the grating response during the ultra-high dose proton exposure. [...]
2020 - Published in : Sci. Rep. 10 (2020) 1344 External link: Fulltext

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1 Quero, G
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