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用于均匀液体折射测量的包含曲面的光流体法布里-珀罗微腔——设计、模拟与实验性能评估

Optofluidic Fabry-Pérot Micro-Cavities Comprising Curved Surfaces for Homogeneous Liquid Refractometry-Design, Simulation, and Experimental Performance Assessment.

作者信息

Gaber Noha, Sabry Yasser M, Marty Frédéric, Bourouina Tarik

机构信息

Laboratoire Electronique, Systèmes de Communication et Microsystèmes, Université Paris-Est, ESIEE Paris, ESYCOM EA 2552, 93162 Noisy-le-Grand, France.

Center for Nanotechnology, Zewail City of Science and Technology, Sheikh Zayed District, 6th of October City, 12588 Giza, Egypt.

出版信息

Micromachines (Basel). 2016 Apr 7;7(4):62. doi: 10.3390/mi7040062.

Abstract

In the scope of miniaturized optical sensors for liquid refractometry, this work details the design, numerical simulation, and experimental characterization of a Fabry-Pérot resonator consisting of two deeply-etched silicon cylindrical mirrors with a micro-tube in between holding the liquid analyte under study. The curved surfaces of the tube and the cylindrical mirrors provide three-dimensional light confinement and enable achieving stability for the cavity illuminated by a Gaussian beam input. The resonant optofluidic cavity attains a high-quality factor ()-over 2800-which is necessary for a sensitive refractometer, not only by providing a sharp interference spectrum peak that enables accurate tracing of the peak wavelengths shifts, but also by providing steep side peaks, which enables detection of refractive index changes by power level variations when operating at a fixed wavelength. The latter method can achieve refractometry without the need for spectroscopy tools, provided certain criteria explained in the details are met. By experimentally measuring mixtures of acetone-toluene with different ratios, refractive index variations of 0.0005 < Δ < 0.0022 could be detected, with sensitivity as high as 5500 μW/RIU.

摘要

在用于液体折射测定的小型光学传感器领域,本文详细介绍了一种法布里 - 珀罗谐振器的设计、数值模拟和实验表征。该谐振器由两个深度蚀刻的硅圆柱镜组成,中间有一个微管,用于容纳正在研究的液体分析物。微管和圆柱镜的曲面提供了三维光限制,并能使由高斯光束输入照亮的腔实现稳定。这种谐振光流体腔具有超过2800的高品质因数(),这对于灵敏的折射仪来说是必要的。这不仅是因为它提供了一个尖锐的干涉光谱峰,能够精确追踪峰波长的移动,还因为它提供了陡峭的边峰,这使得在固定波长下操作时能够通过功率水平变化检测折射率变化。如果满足详细解释的某些标准,后一种方法可以在无需光谱工具的情况下实现折射测定。通过实验测量不同比例的丙酮 - 甲苯混合物,可以检测到0.0005 < Δ < 0.0022的折射率变化,灵敏度高达5500 μW/RIU。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0268/6190164/e335b6379f5f/micromachines-07-00062-g001.jpg

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本文引用的文献

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