DocumentCode :
1368254
Title :
A composite optical waveguide-based polarimetric interferometer for chemical and biological sensing applications
Author :
Qi, Zhi-Mei ; Itoh, Kiminori ; Murabayashi, Masayuki ; Yanagi, Hiroyuki
Author_Institution :
Inst. of Environ. Sci. & Technol., Yokohama Nat. Univ., Japan
Volume :
18
Issue :
8
fYear :
2000
Firstpage :
1106
Lastpage :
1110
Abstract :
A new polarimetric interferometer has been developed on the basis of the phase difference between transverse electric (TE)/sub 0/ and transverse magnetic (TM)/sub 0/ modes in a composite optical waveguide (OWG). The composite OWG consists of a single-mode potassium ion-exchanged planar waveguide overlaid with a high-index thin film that has two tapered ends and supports only the TE/sub 0/ mode. Applying tapered velocity coupling theory, we found that the TE/sub 0/ and TM/sub 0/ modes coexisting in the potassium ion-exchanged layer were separated in the thin film region of the composite OWG: the TE/sub 0/ mode was coupled into the thin film while the TM/sub 0/ mode was confined in the potassium ion-exchanged layer. Interference occurs between TE- and TM-polarized output components when a single output beam is passed through a 45/spl deg/-polarized analyzer. The phase difference /spl phi/ between both orthogonal output components is very sensitive to the superstrate index n/sub c/ in the thin film region. Our experimental results indicate that a slight change of /spl Delta/n/sub c/=3.71/spl times/10/sup -6/ results in the phase-difference variation of /spl Delta//spl phi/=1/spl deg/ for a 5-mm-long TiO/sub 2//K/sup +/ composite OWG with a 34-nm-thick TiO/sub 2/ film. Such a simple polarimetric interferometer can be applied to chemical or biological sensors by modifying the upper film surface of the composite OWG with a chemically or biologically active substance.
Keywords :
biosensors; chemical sensors; ion exchange; light interferometers; optical films; optical planar waveguides; polarimetry; potassium; 34 mm; 45/spl deg/-polarized analyzer; 5 mm; K; TE-polarized output components; TM-polarized output components; TiO/sub 2/; TiO/sub 2/ film; biological sensing applications; chemical sensing applications; high-index thin film; optical waveguide-based polarimetric interferometer; orthogonal output components; phase difference; phase-difference variation; polarimetric interferometer; single output beam; single-mode potassium ion-exchanged planar waveguide; superstrate index; tapered velocity coupling theory; thin film region; upper film surface; Biomedical optical imaging; Chemical and biological sensors; Magnetic separation; Optical films; Optical interferometry; Optical sensors; Optical waveguide theory; Optical waveguides; Tellurium; Transistors;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/50.857756
Filename :
857756
Link To Document :
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