Search Results - "Campanella, Cosimo"
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Extreme Radiation Sensitivity of Ultra-Low Loss Pure-Silica-Core Optical Fibers at Low Dose Levels and Infrared Wavelengths
Published in Sensors (Basel, Switzerland) (17-12-2020)“…We report here the response of a commercial ultra-low loss (ULL) single-mode (SM) pure silica core (PSC) fiber, the Vascade EX1000 fiber from Corning,…”
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Monitoring of Ultra-High Dose Rate Pulsed X-ray Facilities with Radioluminescent Nitrogen-Doped Optical Fiber
Published in Sensors (Basel, Switzerland) (21-04-2022)“…We exploited the potential of radiation-induced emissions (RIEs) in the visible domain of a nitrogen-doped, silica-based, multimode optical fiber to monitor…”
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3
Atmospheric Neutron Monitoring through Optical Fiber-Based Sensing
Published in Sensors (Basel, Switzerland) (12-08-2020)“…The potential of fiber-based sensors to monitor the fluence of atmospheric neutrons is evaluated through accelerated tests at the TRIUMF Neutron Facility (TNF)…”
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Impact of γ-rays Irradiation on Hybrid TiO2-SiO2 Sol-Gel Films Doped with RHODAMINE 6G
Published in Materials (02-10-2021)“…In the present paper, we investigate how the optical and structural properties, in particular the observed photoluminescence (PL) of photocurable and…”
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Experimental–Simulation Analysis of a Radiation Tolerant Erbium-Doped Fiber Amplifier for Space Applications
Published in Applied sciences (01-10-2023)“…Research on optical amplifiers has highlighted how ionizing radiation negatively impacts the performance of erbium-doped fiber amplifiers (EDFAs), through the…”
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Radiation responses of ultra-low loss pure-silica-core optical fibers in the visible to infrared domains
Published in Optical materials. X (01-10-2022)“…–We investigated the origins of the steady state X-ray radiation-induced attenuation (RIA) in the visible to infrared spectral domains of an ultra-low loss…”
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Radiation Effects on Pure-Silica Multimode Optical Fibers in the Visible and Near-Infrared Domains: Influence of OH Groups
Published in Applied sciences (01-04-2021)“…Signal transmission over optical fibers in the ultraviolet to near-infrared domains remains very challenging due to their high intrinsic losses. In…”
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Potential of Germano-Phosphosilicate Single-Mode Optical Fibers for Dosimetry
Published in IEEE transactions on nuclear science (01-05-2024)“…We study the near-infrared (NIR) radiation-induced attenuation (RIA) of a single-mode (SM) optical fiber composed by a Ge-doped core, a ~4-<inline-formula>…”
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Radiation Monitoring With Radiosensitive Pure-Silica Core Ultralow Loss Optical Fiber
Published in IEEE transactions on nuclear science (01-08-2024)“…This article presents a new prospect for radiation detection exploiting the high radiation sensitivity of an ultralow-loss pure-silica core optical fiber…”
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Temperature Dependence of Radiation-Induced Attenuation of a Fluorine-doped Single-Mode Optical Fiber at InfraRed Wavelengths
Published in IEEE transactions on nuclear science (01-04-2023)“…Harsh environments can combine radiations and extreme temperature constraints, which can both degrade the optical performances of silica-based optical fibers…”
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Radiation Monitoring with Radiosensitive Pure-Silica Core Ultra-Low Loss Optical Fiber
Published in IEEE transactions on nuclear science (22-03-2024)Get full text
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Reproducibility of Dose Rate Measurements with Radioluminescent Nitrogen-doped Optical Fibers
Published in IEEE transactions on nuclear science (01-08-2023)“…We studied the reproducibility of X-ray dose rate measurements using radioluminescent (RL) single-mode and multi-mode N-doped silica based optical fibers in…”
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13
Temperature Dependence of Radiation Induced Attenuation of Aluminosilicate Optical Fiber
Published in IEEE transactions on nuclear science (01-07-2022)“…We investigated in situ the temperature influence on X-ray radiation-induced attenuation (RIA) levels and kinetics of an Al-doped single-mode optical fiber…”
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Photobleaching Effect on the Radiation‐Induced Attenuation of an Ultralow Loss Optical Fiber at Telecommunication Wavelengths
Published in Physica status solidi. A, Applications and materials science (01-01-2022)“…An unexpected high sensitivity to radiation has recently been discovered in a new generation of ultralow loss pure‐silica core optical fiber, the Corning…”
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15
Calibration in the Visible and Infrared Domains of Multimode Phosphosilicate Optical Fibers for Dosimetry Applications
Published in IEEE transactions on nuclear science (01-08-2023)“…We systematically explore the suitability of two radiation-sensitive multimode optical fibers with either P or GeP-doped cores, to serve as the sensing…”
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Photobleaching Effect on Infrared Radiation-Induced Attenuation of Germanosilicate Optical Fibers at MGy Dose Levels
Published in IEEE transactions on nuclear science (01-08-2021)“…We investigated the radiation-induced attenuation (RIA) at 1550 nm under X-rays in two single-mode germanosilicate optical fibers (OFs): the Corning SMF-28e +…”
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Steady-State X-Ray Radiation-Induced Attenuation in Canonical Optical Fibers
Published in IEEE transactions on nuclear science (01-07-2020)“…The so-called canonical optical fibers (OFs) are samples especially designed to highlight the impact of some manufacturing process parameters on the radiation…”
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Mirror-Assisted Radioluminescent Optical Fibers for X-Ray Beam Monitoring
Published in IEEE transactions on nuclear science (01-04-2023)“…In the framework of the current development of optical fiber (OF) sensors for dosimetry or beam monitoring applications based on radioluminescence (RL), we…”
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Influence of ambient light on the radiation-induced attenuation of germanosilicate optical fibers in the visible and near-infrared domains
Published in IEEE transactions on nuclear science (01-04-2023)“…We investigated the influence of the ambient light on the Radiation-Induced Attenuation (RIA) of Ge-doped optical fibers measured at the telecommunication…”
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Pulsed X‐Ray Radiation Response of Ultralow Loss Pure‐Silica‐Core Optical Fibers
Published in Physica status solidi. A, Applications and materials science (01-01-2022)“…The transient radiation response from the visible to the infrared (IR) domains (400–2200 nm) of an ultralow loss pure‐silica‐core and fluorine‐doped…”
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