DocumentCode
1225137
Title
Experimental and numerical study of SiON microresonators with air and polymer cladding
Author
Klunder, D.J.W. ; Tan, F.S. ; van der Veen, T. ; Bulthuis, H.F. ; Sengo, G. ; Docter, B. ; Hoekstra, H.J.W.M. ; Driessen, A.
Author_Institution
Lightwave Devices Group, Univ. of Twente, Enschede, Netherlands
Volume
21
Issue
4
fYear
2003
fDate
4/1/2003 12:00:00 AM
Firstpage
1099
Lastpage
1110
Abstract
A systematic experimental and numerical study of the device performance of waveguide-coupled SiON microresonators with air and polymer cladding is presented. Values of device parameters like propagation losses of the microresonator modes, the off-resonance insertion losses, and the straight waveguide to microresonator coupling are determined by applying a detailed fitting procedure to the experimental results and compared to results of detailed numerical simulations. By comparing the propagation losses of the fundamental TE polarized microresonator mode obtained by fitting to the measured spectra to the also experimentally determined propagation losses in the adjacent straight waveguide and the materials losses, it is possible to identify the loss mechanisms in the microresonator. By comparing experimental results for microresonators with air and polymethylmethacrylate cladding and a detailed numerical study, the influence of the cladding index on the bend losses is evaluated. It is demonstrated that the presence of an upper cladding can, under the right conditions, actually be beneficial for loss reduction.
Keywords
air; bending; claddings; integrated optics; light polarisation; micro-optics; optical couplers; optical losses; optical polymers; optical resonators; silicon compounds; SiON; SiON microresonators; air cladding; bend losses; cladding index; device parameters; device performance; fitting procedure; fundamental TE polarized microresonator mode; integrated optics; loss reduction; microresonator modes; numerical simulations; off-resonance insertion losses; polymer cladding; polymethylmethacrylate cladding; propagation losses; straight waveguide coupling; upper cladding; Insertion loss; Integrated optics; Loss measurement; Microcavities; Optical filters; Optical losses; Optical waveguides; Polymers; Propagation losses; Resonance;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2003.810100
Filename
1207362
Link To Document