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Admittance loci design method for multilayer surface plasmon resonance devices
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Admittance loci design method for multilayer surface plasmon resonance devices

Chii-Wann Lin, Kuo-Ping Chen, Min-Chi Su, Tze-Chien Hsiao, Sue-Sheng Lee, Shiming Lin, Xue-jing ShiChih-Kung Lee
Sensors and Actuators, B: Chemical, 卷.117(1), 頁碼.219-229
09/2006

摘要

Admittance loci Biosensor Dielectric mirror Surface plasmon resonance Electronic Optical and Magnetic Materials Instrumentation Condensed Matter Physics Surfaces Coatings and Films Metals and Alloys Electrical and Electronic Engineering Materials Chemistry
Dielectric mirror types of multilayer structures have been applied to enhance the performance of surface plasmon resonance (SPR) devices. It demands a more robust design method than traditional Fresnel's equations. An admittance locus is a kind of optical thin film design method which has been extensively used for high performance optical coatings. We have applied this method for the design of multilayer SPR devices, including symmetric (glass|Au(40 nm)-[TiO 2 (20 nm)-SiO 2 (20 nm)] 4 -Au(30 nm)) and asymmetric (glass|Ag(50 nm)-[TiO 2 (20 nm)-SiO 2 (20 nm)] 4 -Au(20 nm)) structure. It provides a much necessary guidance for the choices of suitable optical materials, thickness, and number of layers for the intended SPR performance. With a 633 nm light source and a BK7 coupling prism under water, one can shift the resonant angle toward the critical angle and have smaller half maximum band widths (HMBW) at (64°, 2°) and (61.52°, 0.25°) for symmetric and asymmetric designs, respectively. © 2005 Elsevier B.V. All rights reserved.

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