DocumentCode :
3609702
Title :
Highly Birefringent Microstructured Fibers With Low Mode Asymmetry
Author :
Denisov, Alexander N. ; Semjonov, Sergei L. ; Astapovich, Maxim S. ; Senatorov, Andrei K.
Author_Institution :
Fiber Opt. Res. Center, Moscow, Russia
Volume :
33
Issue :
24
fYear :
2015
Firstpage :
5184
Lastpage :
5194
Abstract :
Highly birefringent microstructured fibers (HB MSFs) with similar mode field sizes along the two orthogonal axes have been presented. The core of the HB MSF is surrounded by two or more concentric rings having identical circular air holes. The key feature of this setup is that the first ring contains one or two pairs of holes, which are more widely spaced than others, i.e., they have one or two wider bridges. The shape of the core may be circular or elliptical. The HB MSFs were characterized using the finite element method. Simulation results show that HB MSFs with a certain relationship between the width of the wider bridges and the core ellipticity may have high birefringence (more than 2.7 × 10-3) and equal mode sizes along the two orthogonal axes. We have fabricated and investigated several such fibers, that have birefringence up to 2.9 × 10-3 and almost equal measured mode field sizes along the two orthogonal axes.
Keywords :
birefringence; finite element analysis; holey fibres; optical fibre fabrication; circular air holes; circular core; concentric rings; core ellipticity; finite element method; highly birefringent microstructured fibers; low mode asymmetry; mode field size; orthogonal axes; Bismuth; Bridges; Color; Loss measurement; Optical fiber polarization; Photonic crystal fibers; Shape; Birefringence; finite element method; microstructured fiber; photonic crystal fiber;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2015.2497371
Filename :
7317505
Link To Document :
بازگشت