The thermomechanical behavior of a standard optical fiber with double coating is theoretically analyzed at room temperature and ~ 220 K. As the primary coating becomes stiffer at low temperature, the impact of the thermal expansion of the coatings is no longer negligible and contributes to the thermal response of the fiber sensor. The temperature sensitivity enhancement is validated by distributed fiber sensors based on Brillouin scattering and coherent Rayleigh scattering at 220 K; the experimental results agree well with the theoretical analysis
We describe an experimental distributed temperature sensor that uses the temperature dependence of t...
This paper reports a distributed temperature and strain sensor based on pulse pre-pump Brillouin opt...
An experimental study of a high temperature distributed optical fiber sensor based on Raman Optical-...
The thermal phase sensitivity of an optical fiber quantifies the degree to which a change in ambient...
A method based on coherent Rayleigh scattering distinctly evaluating temperature and strain is propo...
International audienceCoupled temperature and γ-ray influence on Brillouin (PPP-BOTDA) and Rayleigh ...
Stimulated Brillouin scattering in silica-based optical fibers may be considered from two different ...
International audienceCoupled temperature and γ-ray influence on Brillouin (PPP-BOTDA) and Rayleigh ...
International audienceCoupled temperature and γ-ray influence on Brillouin (PPP-BOTDA) and Rayleigh ...
International audienceCoupled temperature and γ-ray influence on Brillouin (PPP-BOTDA) and Rayleigh ...
This paper presents simulations of a distributed fiber optic sensor for temperature and strain sensi...
Optical fiber sensors based on stimulated Brillouin scattering have now clearly demonstrated their e...
Present day commercially available fibre optic distributed temperature sensors exploit the temperatu...
The relative accuracy of temperature and strain determination using Brillouin frequency shift and po...
The technical evolution in the field of optical fibre sensors is reviewed with particular reference ...
We describe an experimental distributed temperature sensor that uses the temperature dependence of t...
This paper reports a distributed temperature and strain sensor based on pulse pre-pump Brillouin opt...
An experimental study of a high temperature distributed optical fiber sensor based on Raman Optical-...
The thermal phase sensitivity of an optical fiber quantifies the degree to which a change in ambient...
A method based on coherent Rayleigh scattering distinctly evaluating temperature and strain is propo...
International audienceCoupled temperature and γ-ray influence on Brillouin (PPP-BOTDA) and Rayleigh ...
Stimulated Brillouin scattering in silica-based optical fibers may be considered from two different ...
International audienceCoupled temperature and γ-ray influence on Brillouin (PPP-BOTDA) and Rayleigh ...
International audienceCoupled temperature and γ-ray influence on Brillouin (PPP-BOTDA) and Rayleigh ...
International audienceCoupled temperature and γ-ray influence on Brillouin (PPP-BOTDA) and Rayleigh ...
This paper presents simulations of a distributed fiber optic sensor for temperature and strain sensi...
Optical fiber sensors based on stimulated Brillouin scattering have now clearly demonstrated their e...
Present day commercially available fibre optic distributed temperature sensors exploit the temperatu...
The relative accuracy of temperature and strain determination using Brillouin frequency shift and po...
The technical evolution in the field of optical fibre sensors is reviewed with particular reference ...
We describe an experimental distributed temperature sensor that uses the temperature dependence of t...
This paper reports a distributed temperature and strain sensor based on pulse pre-pump Brillouin opt...
An experimental study of a high temperature distributed optical fiber sensor based on Raman Optical-...