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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Inline Fiber Optic Chemical Sensor Using a Self-Aligned Epoxy Microbridge With a Metal Layer
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Inline Fiber Optic Chemical Sensor Using a Self-Aligned Epoxy Microbridge With a Metal Layer

机译:使用具有金属层的自对准环氧树脂微桥的在线光纤化学传感器

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摘要

We propose the use of a self-aligned epoxy microbridge with a metal layer for a low-cost, easy-to-make inline fiber optic chemical sensor that can sense the concentration of chemical solutions. The key component of the sensor is a cylindrical epoxy microbridge that can be assembled between input and output optical fibers by self-aligned UV curing. The microbridge is made from an epoxy that can rapidly diffuse liquid. The top of the microbridge was coated with Au/Ti to block diffusion of the surrounding solution and to induce optical dissipation that depends on the concentration of the chemical solution. We tested our fiber optic chemical sensor for deionized (DI) water and NaCl solution. The medium surrounding the microbridge asymmetrically diffuses into the epoxy microbridge due to the metal layer. The asymmetrical diffusion, consequently, makes a major change to the refractive index on the bottom of the microbridge, thereby altering the propagation mode of light. As a result, depending on the concentration of the NaCl solution, a fraction of the propagated light is absorbed into the metal layer. The sensitivity, which refers to the ratio of the concentration change and optical power, was experimentally confirmed to be 0.103 (wt%/photon count).
机译:我们建议使用带有金属层的自对准环氧微桥作为低成本,易于制造的在线光纤化学传感器,该传感器可以感应化学溶液的浓度。传感器的关键组件是圆柱形环氧微桥,可通过自对准UV固化将其组装在输入和输出光纤之间。微桥由可以迅速扩散液体的环氧树脂制成。微桥的顶部涂有Au / Ti,以阻止周围溶液的扩散并引起取决于化学溶液浓度的光耗散。我们测试了光纤化学传感器的去离子(DI)水和NaCl溶液。由于金属层的缘故,围绕微桥的介质不对称地扩散到环氧微桥中。因此,非对称扩散对微桥底部的折射率产生了重大变化,从而改变了光的传播模式。结果,取决于NaCl溶液的浓度,一部分传播的光被吸收到金属层中。灵敏度,是指浓度变化与光功率的比率,通过实验确定为0.103(wt%/光子计数)。

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