DocumentCode
901518
Title
Coupling efficiency of butt-joined planar waveguides with simultaneous tilt and transverse offset
Author
Hosain, Shaikh Iqbal ; Meunier, Jean-Pierre ; Wang, Zi Hua
Author_Institution
Lab. de Phys., Bourgogne Univ., Dijon, France
Volume
14
Issue
5
fYear
1996
fDate
5/1/1996 12:00:00 AM
Firstpage
901
Lastpage
907
Abstract
An efficient method has been proposed for evaluating the junction loss between two nonidentical arbitrarily graded-index planar optical waveguides caused by simultaneous transverse and angular misalignments. The salient feature of the method is an exact representation of the modal. Fields which is particularly adapted to loss evaluation at imperfect junctions. The power transmission coefficient at the junction is expressed via the overlap integral method as a weighted sum of simple Laguerre-Gaussian functions, the weight factors being determined by solving a linear matrix eigenvalue problem. The present formulation has a very broad scope of validity and can be used for the modal analysis of integrated optical planar components such as waveguide lenses and to estimate the coupling efficiency of more practical fiber-to-channel butt-joints. The method can also he used to test the accuracies of other approximate methods such as those based on the Gaussian approximation of the lowest order planar waveguide mode
Keywords
approximation theory; eigenvalues and eigenfunctions; integral equations; lenses; optical couplers; optical losses; optical planar waveguides; optical waveguide components; optical waveguide theory; Gaussian approximation; Laguerre-Gaussian functions; angular misalignments; approximate methods; butt-joined planar waveguides; coupling efficiency; fiber-to-channel butt-joints; imperfect junctions; integrated optical planar components; junction loss; linear matrix eigenvalue problem; loss evaluation; lowest order planar waveguide mode; modal analysis; nonidentical arbitrarily graded-index planar optical waveguides; overlap integral method; power transmission coefficient; simultaneous tilt/transverse offset; transverse misalignments; waveguide lenses; weight factors; weighted sum; Eigenvalues and eigenfunctions; Integrated optics; Modal analysis; Optical losses; Optical planar waveguides; Optical waveguides; Planar waveguides; Power transmission; Transmission line matrix methods; Waveguide junctions;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/50.495175
Filename
495175
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