Litcius/Paper detail

Polymer Waveguide Coupled Surface Plasmon Refractive Index Sensor: A Theoretical Study

Lanting Ji, Shuqing Yang, Rongna Shi, Yujie Fu, Juan Su, Chi Wu

2020Photonic Sensors29 citationsDOIOpen Access PDF

Abstract

Abstract A waveguide coupled surface plasmon sensor for detection of liquid with high refractive index (RI) is designed based on polymer materials. The effects of variation of the thickness of the Au film, polymethyl methacrylate (PMMA) buffer, and waveguide layer on the sensing performance of the waveguide are comprehensively investigated by using the finite difference method. Numerical simulations show that a thinner gold film gives rise to a more sensitive structure, while the variation of the thickness of the PMMA buffer and waveguide layer has a little effect on the sensitivity. For liquid with high RI, the sensitivity of the sensor increases significantly. When RI of liquid to be measured increases from 1.45 to 1.52, the sensitivity is as high as 4518.14nm/RIU, and a high figure of merit of 114.07 is obtained. The waveguide coupled surface plasmon RI sensor shows potential applications in the fields of environment, industry, and agriculture sensing with the merits of compact size, low cost, and high integration density.

Topics & Concepts

Materials scienceRefractive indexWaveguidePolymethyl methacrylateFigure of meritSensitivity (control systems)Surface plasmon resonanceSurface plasmonOpticsOptoelectronicsPolymerPlasmonLayer (electronics)Composite materialNanotechnologyElectronic engineeringEngineeringPhysicsNanoparticlePlasmonic and Surface Plasmon ResearchAdvanced Fiber Optic SensorsPhotonic and Optical Devices