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An integrated optical interferometric nanodevice based on silicon technology for biosensor applications

机译:基于硅技术的集成光学干涉纳米器件,用于生物传感器应用

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摘要

Integrated optical sensors have become important in recent years since they are the only technology which allows the direct detection of biomolecular interactions. Moreover, silicon microelectronics technology allows mass production as well as the fabrication of nano-/macrosystems on the same platform by hybrid integration of sources, sensors, photodetectors and complementary metal-oxide semiconductor electronics. For the fabrication of an optical sensor nanodevice with an integrated Mach-Zehnder interferometric (MZI) configuration, the optical waveguides must have two main features: monomode behaviour and a high surface Sensitivity. In this paper we present the development of a MZI sensor based on total internal reflection waveguides with nanometre dimensions. The aim is to use these sensors in environmental control to detect water pollutants by immunoassay techniques.
机译:由于集成光学传感器是唯一可以直接检测生物分子相互作用的技术,因此近年来已变得非常重要。而且,硅微电子技术通过源,传感器,光电探测器和互补金属氧化物半导体电子器件的混合集成,可以在同一平台上进行大规模生产以及纳米/宏观系统的制造。对于具有集成马赫曾德尔干涉(MZI)配置的光学传感器纳米器件的制造,光波导必须具有两个主要特征:单模行为和高表面灵敏度。在本文中,我们介绍了基于纳米尺寸全内反射波导的MZI传感器的开发。目的是在环境控制中使用这些传感器通过免疫测定技术检测水污染物。

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