DocumentCode :
3602955
Title :
Nonreciprocal TE–TM Mode Conversion Based on Photonic Crystal Fiber of Air Holes Filled With Magnetic Fluid Into a Terbium Gallium Garnet Fiber
Author :
Otmani, Hamza ; Bouchemat, Mohamed ; Bouchemat, Touraya ; Lahoubi, Mahieddine ; Wei Wang ; Shengli Pu
Author_Institution :
Dept. of Electron., Constantine 1 Univ., Constantine, Algeria
Volume :
51
Issue :
11
fYear :
2015
Firstpage :
1
Lastpage :
4
Abstract :
In this paper, we study the nonreciprocal TE-TM mode conversion phenomenon by the simulation of magnetophotonic crystal fiber (MPCF). This MPCF consists of a periodic triangular lattice of air holes filled with magnetic fluid (Fe3O4) into a terbium gallium garnet (TGG) fiber. It is well known that, owing to its excellent transparency properties and its resistant character to laser damage, TGG is always selected as a Faraday rotator material. Also, TGG has a high Verdet constant related to the Faraday rotation (FR) effect. Here, with the consideration of the effect of gyrotropy, our simulations are associated with some calculations of the FR and modal birefringence. In this MPCF, the light is guided by internal total reflection, like classical fibers. However, it is shown that the designed MPCF could function as a mode converter with much stronger conversion efficiency than the conventional fibers.
Keywords :
Faraday effect; birefringence; gallium compounds; garnets; holey fibres; iron compounds; light reflection; magnetic fluids; optical design techniques; optical fibre testing; optical lattices; optical materials; optical rotation; photonic crystals; terbium compounds; Faraday rotator material; Fe3O4; TGG; Verdet constant; air holes; gyrotropy effect; internal total reflection; laser damage; magnetic fluid; magnetophotonic crystal fiber design; modal birefringence; nonreciprocal TE-TM mode conversion; periodic triangular lattice; terbium gallium garnet fiber; Couplings; Faraday effect; Magnetic liquids; Optical fiber sensors; Optical fibers; Photonic crystals; Faraday rotation; Faraday rotation (FR); Magneto photonic crystal; TE-TM mode conversion; TE???TM mode conversion; Terbium gallium garnet; magnetophotonic crystal; terbium gallium garnet (TGG);
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2443109
Filename :
7120965
Link To Document :
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