Silicon plasmonic-integrated sensor

SPIE OPTO Pub Date : 2016-03-16 DOI:10.1117/12.2214103
Ahmad Ayoub, Qiaoqiang Gan, M. Swillam
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引用次数: 9

Abstract

We propose a novel structure with two input and output silicon waveguide ports separated by the Insulator-Metal- Insulator channel deposited on silicon nitride base. In principle, both the top surface insulator/metal interface and bottom surface can support SPP a decoupled modes. Once the SPP modes excited input silicon waveguide, the SPP signals from the two optical branches (the top and bottom interfaces) propagate to the output silicon waveguide. At the output waveguide both branches interfere with each other and modulate the far-field scattering. The top surface is considered as the sensing arm of this plasmonic Mach-Zehnder interferometer (MZI). The bottom surface is considered as the reference arm of the sensor. High sensitivity and small foot print is achieved using this integrated simple plasmonic design. The combination of sensitive interferometric techniques and the optimization process of the design and the material yields to enhanced sensitivities up to 3000 nm/RIU.
硅等离子体集成传感器
我们提出了一种新颖的结构,由沉积在氮化硅基底上的绝缘体-金属-绝缘体通道分隔两个输入和输出硅波导端口。原则上,上表面绝缘子/金属界面和下表面都可以支持SPP - a解耦模式。一旦SPP模式激发输入硅波导,来自两个光分支(顶部和底部接口)的SPP信号传播到输出硅波导。在输出波导处,两个分支相互干扰并调制远场散射。顶面作为等离子体马赫-曾德尔干涉仪的传感臂。底部表面被认为是传感器的参考臂。使用这种集成的简单等离子体设计实现了高灵敏度和小占地面积。结合灵敏的干涉测量技术和优化的设计过程,材料的灵敏度提高到3000 nm/RIU。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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