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High-Q Fabry–Pérot Micro-Cavities for High-Sensitivity Volume Refractometry

机译:高灵敏度法布里-珀罗微腔用于高灵敏度体积折光仪

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摘要

This work reports a novel structure for a Fabry–Pérot micro cavity that combines the highest reported quality factor for an on-chip Fabry–Pérot resonator that exceeds 9800, and a very high sensitivity for an on-chip volume refractometer based on a Fabry–Pérot cavity that is about 1000 nm/refractive index unit (RIU). The structure consists of two cylindrical Bragg micromirrors that achieve confinement of the Gaussian beam in the plan parallel to the chip substrate, while for the perpendicular plan, external fiber rod lenses (FRLs) are placed in the optical path of the input and the output of the cavity. This novel structure overcomes number of the drawbacks presented in previous designs. The analyte is passed between the mirrors, enabling its detection from the resonance peak wavelengths of the transmission spectra. Mixtures of ethanol and deionized (DI)-water with different ratios are used as analytes with different refractive indices to exploit the device as a micro-opto-fluidic refractometer. The design criteria are detailed and the modeling is based on Gaussian-optics equations, which depicts a scenario closer to reality than the usually used ray-optics modeling.
机译:这项工作报告了一种新颖的Fabry-Pérot微腔结构,该结构结合了超过9800的片上Fabry-Pérot谐振器的最高报告品质因数,以及基于Fabry-Pic的片上体积折光仪的极高灵敏度Pérot腔约为1000 nm /折射率单位(RIU)。该结构由两个圆柱形布拉格微镜组成,可将高斯光束限制在平行于芯片基板的平面内,而对于垂直平面,将外部光纤棒状透镜(FRL)放置在光纤的输入和输出光路中空腔。这种新颖的结构克服了先前设计中存在的许多缺点。分析物在反射镜之间通过,从而能够从透射光谱的共振峰波长进行检测。乙醇和去离子水比例不同的混合物用作具有不同折射率的分析物,从而将该设备用作微光流体折光仪。详细的设计标准和建模基于高斯光学方程式,与通常使用的射线光学建模相比,该方程式更接近实际情况。

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