DocumentCode
791101
Title
Hybridization of III-V semiconductor membranes onto ion-exchanged waveguides
Author
Nannini, Matthieu ; Grondin, Etienne ; Gorin, Arnaud ; Aimez, Vincent ; Broquin, Jean-Emmanuel
Author_Institution
Centre of Res. in Nanocharacterization & Nanofabrication, Sherbrooke Univ., Que., Canada
Volume
11
Issue
2
fYear
2005
Firstpage
547
Lastpage
554
Abstract
In this paper, we present an original method for the realization of hybrid photonic integrated circuits (PICs) based on ion-exchanged (IE) waveguides and III-V semiconductor materials. In our approach, we propose to bond thin semiconductor membranes at designated locations of the PIC where active functions are required. The advantage of very thin membranes is the possibility to keep the optical pathway defined by the IE waveguides even if the semiconductor refractive index is much higher than the glass refractive index. Modal analysis and beam propagation method simulations have been carried out in order to predict the modal structure of the propagated light into the membrane loaded IE waveguide and the transition from the IE waveguide itself through adiabatic tapers.
Keywords
III-V semiconductors; bonding processes; coupled mode analysis; integrated optics; ion exchange; optical materials; optical waveguide theory; refractive index; III-V semiconductor membranes; beam propagation method; hybrid photonic integrated circuits; ion-exchanged waveguides; modal analysis; refractive index; Biomembranes; Bonding; III-V semiconductor materials; Optical propagation; Optical waveguides; Photonic integrated circuits; Refractive index; Semiconductor materials; Semiconductor waveguides; Waveguide transitions; Adiabatic coupling; beam propagation method (BPM) simulation; die wafer bonding; hybrid integrated optics; ion-exchanged (IE) waveguides; modal analysis;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2005.846528
Filename
1425494
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