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基于凹芯光子晶体光纤的快速响应法布里-珀罗干涉仪微流折射率光纤传感器

Fast response Fabry-Perot interferometer microfluidic refractive index fiber sensor based on concave-core photonic crystal fiber.

作者信息

Tian Jiajun, Lu Zejin, Quan Mingran, Jiao Yuzhu, Yao Yong

出版信息

Opt Express. 2016 Sep 5;24(18):20132-42. doi: 10.1364/OE.24.020132.

Abstract

We report a fast response microfluidic Fabry-Perot (FP) interferometer refractive index (RI) fiber sensor based on a concave-core photonic crystal fiber (CPCF), which is formed by directly splicing a section CPCF with a section of single mode fiber. The CPCF is made by cleaving a section of multimode photonic crystal fiber with an axial tension. The shallow concave-core of CPCF naturally forms the FP cavity with a very short cavity length. The inherent large air holes in the cladding of CPCF are used as the open channels to let liquid sample come in and out of FP cavity. In order to shorten the liquid channel length and eliminate the harmful reflection from the outside end face of the CPCF, the CPCF is cleaved with a tilted tensile force. Due to the very small cavity capacity, the short length and the large sectional area of the microfluidic channels, the proposed sensor provides an easy-in and easy-out structure for liquids, leading to great decrement of the measuring time. The proposed sensor exhibits fast measuring speed, the measuring time is less than 359 and 23 ms for distilled water and pure ethanol, respectively. We also experimentally study and demonstrate the superior performances of the sensor in terms of high RI sensitivity, good linear response, low temperature cross-sensitivity and easy fabrication.

摘要

我们报道了一种基于凹芯光子晶体光纤(CPCF)的快速响应微流控法布里 - 珀罗(FP)干涉仪折射率(RI)光纤传感器,它是通过将一段CPCF与一段单模光纤直接熔接而成。CPCF是通过在轴向拉力作用下切割一段多模光子晶体光纤制成的。CPCF的浅凹芯自然形成了腔长非常短的FP腔。CPCF包层中固有的大空气孔用作开放通道,使液体样品进出FP腔。为了缩短液体通道长度并消除来自CPCF外端面的有害反射,以倾斜拉力切割CPCF。由于腔容量非常小、微流控通道长度短且横截面积大,所提出的传感器为液体提供了进出容易的结构,导致测量时间大幅减少。所提出的传感器具有快速测量速度:对于蒸馏水和纯乙醇,测量时间分别小于359毫秒和23毫秒。我们还通过实验研究并证明了该传感器在高RI灵敏度、良好线性响应、低温交叉灵敏度和易于制造方面的优异性能。

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