Title :
Efficient Faraday rotation in birefringent optical microfibre loop resonators for current sensing
Author :
Chen, G.Y. ; Brambilla, Gilberto ; Newson, T.P.
Author_Institution :
Optoelectron. Res. Centre, Univ. of Southampton, Southampton, UK
Abstract :
The optimisation of resonantly enhanced Faraday rotation in microfibre loop resonators with linear birefringence is presented. For a sufficiently large birefringence-induced resonance separation, the evolution of differential phase between the two orthogonal polarisations can lead to efficient Faraday rotation when the loop circumference is a quarter of the polarisation beat length and the round-trip phase of the eigenmode in the fast axis is 3π/2 plus an integer multiple of 2π. This reported study provides the groundwork for fabricating microfibre loop resonator based current sensors that can operate efficiently despite the presence of birefringence.
Keywords :
Faraday effect; birefringence; eigenvalues and eigenfunctions; electric sensing devices; fibre optic sensors; light polarisation; microfabrication; optical resonators; optimisation; birefringence-induced resonance separation; current sensing; differential phase evolution; eigenmode; linear birefringent optical microfibre loop resonator; loop circumference; optimisation; orthogonal polarisation; polarisation beat length quarter; resonantly enhanced Faraday rotation; round-trip phase;
Journal_Title :
Electronics Letters
DOI :
10.1049/el.2012.3156