DocumentCode
1066511
Title
Rigorous Analysis of Superconducting Multilayer Optical Waveguides
Author
Ghamsari, Behnood G. ; Majedi, A.Hamed
Author_Institution
Univ. of Waterloo, Waterloo
Volume
17
Issue
2
fYear
2007
fDate
6/1/2007 12:00:00 AM
Firstpage
590
Lastpage
593
Abstract
In this paper, we present the transfer matrix method (TMM) as a general formulation to find the TE and TM dispersion equations of general multilayer structures consisting superconductors, semiconductors and dielectrics. We then introduce Cauchy integration method (CIM) as an efficient and general numerical method in order to solve the previously found dispersion equations. In the next step we apply both TMM and CIM to a superconductor-dielectric-superconductor multilayer structure consisting of YBCO thin films grown on the glass substrate. In this example we will find the optical propagation characteristics of the waveguide such as the propagation and attenuation constants and power distribution of the optical signal through out the structure as a function of the substrate thickness for several thicknesses of the superconducting layers. We briefly show that how these results can be employed in the design of the optoelectronic devices such as traveling-wave superconducting photodetectors.
Keywords
barium compounds; dispersion relations; integrated optics; integration; optical waveguides; optoelectronic devices; superconducting devices; thin films; transfer function matrices; yttrium compounds; Cauchy integration method; TE dispersion equations; TM dispersion equations; YBCO thin films; YBa2Cu3O7 - Interface; general multilayer structures; glass substrate; optical propagation; optical signal; superconducting multilayer optical waveguides; superconductor-dielectric-superconductor multilayer structure; transfer matrix method; Computer integrated manufacturing; Dielectric substrates; Dielectric thin films; Equations; Nonhomogeneous media; Optical attenuators; Optical films; Optical propagation; Optical waveguides; Superconducting photodetectors; Multilayer waveguides; photonic devices; superconducting devices; superconducting optoelectronics;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2007.898250
Filename
4277408
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