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Demonstration of a Low-Cost and Portable Optical Cavity-Based Sensor through Refractive Index Measurements

机译:通过折射率测量演示低成本便携式光学腔传感器

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An optical cavity-based sensor using a differential detection method has been proposed for point-of-care diagnostics. We developed a low-cost and portable optical cavity-based sensor system using a 3D printer and off-the-shelf optical components. In this paper, we demonstrate the sensing capability of the portable system through refractive index measurements. Fabricated optical cavity samples were tested using the portable system and compared to simulation results. A referencing technique and digital low pass filtering were applied to reduce the noise of the portable system. The measurement results match the simulation results well and show the improved linearity and sensitivity by employing the differential detection method. The limit of detection achieved was 1.73 × 10 ?5 Refractive Index Unit (RIU), which is comparable to other methods for refractive index sensing.
机译:已经提出了使用差分检测方法的基于光学腔的传感器,用于即时诊断。我们使用3D打印机和现成的光学组件开发了一种低成本且基于光学腔的便携式传感器系统。在本文中,我们通过折射率测量证明了便携式系统的传感能力。使用便携式系统测试了制造的光学腔样品,并与仿真结果进行了比较。应用参考技术和数字低通滤波来降低便携式系统的噪声。测量结果与仿真结果非常吻合,并通过差分检测方法显示出改善的线性度和灵敏度。达到的检测极限是1.73×10 -5折射率单位(RIU),与其他用于折射率传感的方法相当。

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