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基于级联 SiN 微环谐振器的高灵敏度折射率传感器。

A highly sensitive refractometric sensor based on cascaded SiN microring resonators.

机构信息

Fraunhofer Institute for Telecommunications, Heinrich Hertz Institute, Einsteinufer 37, Berlin 10587, Germany.

出版信息

Sensors (Basel). 2013 Oct 28;13(11):14601-10. doi: 10.3390/s131114601.

Abstract

We investigate a highly sensitive optical sensor based on two cascaded microring resonators exploiting the Vernier effect. The architecture consists of two microrings with a slight difference in their free spectral ranges. This allows the generation of the Vernier effect for achieving ultra-high sensitivities. The sensor chip was fabricated using a silicon nitride platform and characterized with isopropanol/ethanol mixtures. A sensitivity of 0.95 nm/% was found for isopropanol concentrations in ethanol ranging from 0% to 10%. Furthermore, a collection of measurements was carried out using aqueous sodium chloride (NaCl) in solutions of different concentrations, confirming a high sensitivity of 10.3 nm/% and a bulk refractive index sensitivity of 6,317 nm/RIU. A limit of detection of 3.16 × 10(-6) RIU was determined. These preliminary results show the potential features of cascaded silicon nitride microring resonators for real-time and free-label monitoring of biomolecules for a broad range of applications.

摘要

我们研究了一种基于两个级联微环谐振器的高灵敏度光学传感器,利用了 Vernier 效应。该结构由两个微环组成,它们的自由光谱范围略有不同。这允许产生 Vernier 效应,以实现超高灵敏度。传感器芯片是使用氮化硅平台制造的,并使用异丙醇/乙醇混合物进行了特性测试。在乙醇中异丙醇浓度从 0%到 10%的范围内,发现灵敏度为 0.95nm/%。此外,还使用不同浓度的水溶液氯化钠 (NaCl) 进行了一系列测量,证实了 10.3nm/%的高灵敏度和 6.317nm/RIU 的体折射率灵敏度。确定了 3.16×10(-6)RIU 的检测限。这些初步结果表明,级联氮化硅微环谐振器在实时和无标记监测生物分子方面具有广泛的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8901/3871120/e2e71231ff57/sensors-13-14601f1.jpg

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