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Transfer-matrix method based on perturbation expansion for periodic and quasi-periodic binary long-period gratings

Resource
JOSA A 16 (11): 2675-2689
Journal
Journal of the Optical Society of America A: Optics and Image Science, and Vision
Journal Volume
16
Journal Issue
11
Pages
2675-2689
Date Issued
1999
Date
1999
Author(s)
Chern, G. W.
LON A. WANG 
DOI
10.1364/JOSAA.16.002675
URI
http://ntur.lib.ntu.edu.tw//handle/246246/148155
https://www.scopus.com/inward/record.uri?eid=2-s2.0-0001621835&doi=10.1364%2fJOSAA.16.002675&partnerID=40&md5=dce782abbcfcffd17c754b804a7a6caa
Abstract
A transfer-matrix method based on perturbation expansion is proposed as an alternative way of simulating the transmission spectrum of a binary long-period grating (LPG). We first generalize the concept of transfer matrices for a heterojunction waveguide. For the couplings among copropagating modes, forward transfer matrices are used to describe the evolution of mode amplitudes along the grating. We show that these elements are related to the well-known coupling coefficients. The method is then used for the study of ideal two-mode grating couplers, and analytic solutions are obtained. We also use the matrix method to study multimode couplings in a LPG and compare the results with those obtained by using the coupled-mode theory. To further demonstrate its usefulness, we apply the method to a special quasi-periodic LPG, the Fibonacci grating. The results show that each cladding mode contributes to several transmission dips and that the dips of different cladding modes are grouped according to the special resonance conditions. © 1999 Optical Society of America.
Type
journal article

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