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硅纳米线光学波导在近红外波段片上宽带分子倍频光谱学中的应用。

Si Nanostrip Optical Waveguide for On-Chip Broadband Molecular Overtone Spectroscopy in Near-Infrared.

机构信息

Electrooptical Engineering Unit , Ben-Gurion University of the Negev , David Ben Gurion Blvd , P.O. Box 653, Beer-Sheva 8410501 , Israel.

Ilse Katz Institute for Nanoscale Science & Technology , Ben-Gurion University of the Negev , David Ben Gurion Blvd , P.O. Box 653, Beer-Sheva 8410501 , Israel.

出版信息

ACS Sens. 2018 Mar 23;3(3):618-623. doi: 10.1021/acssensors.7b00867. Epub 2018 Feb 22.

Abstract

The ability to probe the molecular fundamental or overtone (high harmonics) vibrations is fundamental to modern healthcare monitoring techniques and sensing technologies since it provides information about the molecular structure. However, since the absorption cross section of molecular vibration overtones is much smaller compared to the absorption cross section of fundamental vibrations, their detection is challenging. Here, a silicon nanostrip rib waveguide structure is proposed for label-free on-chip overtone spectroscopy in near-infrared (NIR). Utilizing the large refractive index contrast (Δ n > 2) between the silicon core of the waveguide and the silica substrate, a broadband NIR lightwave can be efficiently guided. We show that the sensitivity for chemical detection is increased by more than 3 orders of magnitude when compared to the evanescent-wave sensing predicted by the numerical model. This spectrometer distinguished several common organic liquids such as N-methylaniline and aniline precisely without any surface modification to the waveguide through the waveguide scanning over the absorption dips in the NIR transmission spectra. Planar NIR Si nanostrip waveguide is a compact sensor that can provide a platform for accurate chemical detection. Our NIR Si nanostrip rib waveguide device can enable the development of sensors for remote, on-site monitoring of chemicals.

摘要

探测分子基频或泛频(高次谐波)振动的能力对于现代医疗保健监测技术和传感技术至关重要,因为它提供了有关分子结构的信息。然而,由于与基频振动相比,分子振动泛频的吸收截面要小得多,因此它们的检测具有挑战性。在这里,提出了一种用于近红外(NIR)的无标记片上泛频光谱学的硅纳米带脊波导结构。利用波导的硅芯与二氧化硅衬底之间的大折射率对比度(Δn>2),可以有效地引导宽带近红外光波。与数值模型预测的消逝波传感相比,我们表明,当化学检测的灵敏度提高了 3 个数量级以上。通过在近红外传输光谱中的吸收峰处扫描波导,该光谱仪可以精确地区分几种常见的有机液体,如 N-甲基苯胺和苯胺,而无需对波导进行任何表面修饰。平面近红外 Si 纳米带脊波导是一种紧凑的传感器,可以为精确的化学检测提供平台。我们的近红外 Si 纳米带脊波导器件可以为远程、现场化学监测传感器的发展提供支持。

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