We describe a distributed fiber optic technique which is able to measure strength and orientation of intense static magnetic fields by using commercial available single optical fiber. The sensor is based on Faraday rotation and on the analysis of the state of polarization of Rayleigh backscattering. The small Verdet constant of standard silica fibers makes the proposed technique most suited to intense magnetic fields in harsh environments like nuclear plants, high-power lines and high-power transformers
We combine a camera, an optical fiber, and artificial intelligence into a single optical magnetomete...
This Thesis is brought to you for free and open access by BYU ScholarsArchive. It has been accepted ...
We present a detailed theoretical analysis of the measurement limits of polarization sensitive refle...
We describe a distributed fiber optic technique which is able to measure strength and orientation of...
We describe a novel distributed fiber optic sensor, which is able to map both strength and orientati...
We describe a novel distributed fiber optic sensor, which is able to map both strength and orientati...
A novel, distributed fiber optic sensor for the vector characterization of static magnetic fields i...
A novel method to perform 3D vector measurement of intense and static magnetic fields is presented. ...
We present a novel theoretical model for the description of round-trip propagation of polarized opti...
A new technique to distributedly monitor intense current along high energy electric cables is presen...
A distributed optical fiber sensor is introduced which is capable of quantifying multiple magnetic f...
We report on the design and implementation of a novel optical fiber system for dual point measuremen...
We present a detailed theoretical analysis of the measurement limits of polarization sensitive refle...
This paper presents an investigation of magnetostrictive material-in-clad optical fibers for distrib...
Fibre measurement of key parameters in nuclear fusion reactor environments, such as the magnetic fie...
We combine a camera, an optical fiber, and artificial intelligence into a single optical magnetomete...
This Thesis is brought to you for free and open access by BYU ScholarsArchive. It has been accepted ...
We present a detailed theoretical analysis of the measurement limits of polarization sensitive refle...
We describe a distributed fiber optic technique which is able to measure strength and orientation of...
We describe a novel distributed fiber optic sensor, which is able to map both strength and orientati...
We describe a novel distributed fiber optic sensor, which is able to map both strength and orientati...
A novel, distributed fiber optic sensor for the vector characterization of static magnetic fields i...
A novel method to perform 3D vector measurement of intense and static magnetic fields is presented. ...
We present a novel theoretical model for the description of round-trip propagation of polarized opti...
A new technique to distributedly monitor intense current along high energy electric cables is presen...
A distributed optical fiber sensor is introduced which is capable of quantifying multiple magnetic f...
We report on the design and implementation of a novel optical fiber system for dual point measuremen...
We present a detailed theoretical analysis of the measurement limits of polarization sensitive refle...
This paper presents an investigation of magnetostrictive material-in-clad optical fibers for distrib...
Fibre measurement of key parameters in nuclear fusion reactor environments, such as the magnetic fie...
We combine a camera, an optical fiber, and artificial intelligence into a single optical magnetomete...
This Thesis is brought to you for free and open access by BYU ScholarsArchive. It has been accepted ...
We present a detailed theoretical analysis of the measurement limits of polarization sensitive refle...