Raman-based Distributed Temperature Sensors (RDTS) allow performing spatially resolved (1 m) reliable temperature measurements over several km long Optical Fibers (OFs). These systems are based on the temperature dependence of the intensities of both the Stokes and anti-Stokes components of the Raman back-scattered signal. One of the specific issues associated with RDTS technology in radiation environments is the differential Radiation Induced Attenuation (RIA) between the two components that induces huge errors in the temperature evaluation. Such problem is particularly evident for commercially available single-ended DTS using one laser source. Double-ended configuration could be used to correct for the differential attenuation but are lim...
We studied the responses of fiber-based temperature and strain sensors related to Optical Frequency...
This article investigates the dark current as well as the dark current random telegraph signal (RTS)...
In this paper, we demonstrate and highlight a proof of concept for the feasibility of an innovative ...
International audienceWe study the performance of Optical Frequency Domain Reflectometry (OFDR) dist...
We report the study of a radiation resistant single mode optical fiber doped with fluorine exposed t...
International audienceTemperature sensors based on microstructured pure silica optical fibers are in...
Temperature response of radiation-tolerant OFDR-based sensors is here investigated, with particular ...
The impact of exposing an optical fiber to 6-MeV electrons on the performances of optical frequency ...
We investigated the capability of micro-structured optical fibers to develop multi-functional, remot...
The impact of the manufacturing process on the radiation-induced degradation effects observed in CMO...
The response of OFDR-based temperature sensors is here investigated in harsh environments (high temp...
Vulnerability of Optical Frequency Domain Reflectometry (OFDR) based sensors to high γ-ray doses (up...
Total ionizing dose effects are studied on a radiation hardened by design (RHBD) 256×256 -pixel CMOS...
International audienceThe difficulties encountered in the implementation of a temperature or strain ...
We investigate the radiation effects on germanosilicate optical fiber acting as the sensing element ...
We studied the responses of fiber-based temperature and strain sensors related to Optical Frequency...
This article investigates the dark current as well as the dark current random telegraph signal (RTS)...
In this paper, we demonstrate and highlight a proof of concept for the feasibility of an innovative ...
International audienceWe study the performance of Optical Frequency Domain Reflectometry (OFDR) dist...
We report the study of a radiation resistant single mode optical fiber doped with fluorine exposed t...
International audienceTemperature sensors based on microstructured pure silica optical fibers are in...
Temperature response of radiation-tolerant OFDR-based sensors is here investigated, with particular ...
The impact of exposing an optical fiber to 6-MeV electrons on the performances of optical frequency ...
We investigated the capability of micro-structured optical fibers to develop multi-functional, remot...
The impact of the manufacturing process on the radiation-induced degradation effects observed in CMO...
The response of OFDR-based temperature sensors is here investigated in harsh environments (high temp...
Vulnerability of Optical Frequency Domain Reflectometry (OFDR) based sensors to high γ-ray doses (up...
Total ionizing dose effects are studied on a radiation hardened by design (RHBD) 256×256 -pixel CMOS...
International audienceThe difficulties encountered in the implementation of a temperature or strain ...
We investigate the radiation effects on germanosilicate optical fiber acting as the sensing element ...
We studied the responses of fiber-based temperature and strain sensors related to Optical Frequency...
This article investigates the dark current as well as the dark current random telegraph signal (RTS)...
In this paper, we demonstrate and highlight a proof of concept for the feasibility of an innovative ...