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Mode-selective optical sensing using asymmetric waveguide junctions

机译:使用非对称波导结的模式选择光学传感

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Measuring a single analyte in a highly absorptive microfluidic channel has always been a challenge. Even with a highly selective sensing layer, other chemical species can affect the interrogation of the analyte. Matching the evanescent tail with the sensing layer thickness is difficult in case of evanescent field sensing. The tail typically extends beyond the sensing layer, introducing noise and spurious errors in the measurement, which scales up with analyte concentration. In this work therefore, we propose the use of a simple multimode evanescent waveguide sensor that eliminates such common spurious effects. The proposed mode-selective sensing system exploits the sensitivity differences between the different guided modes in detecting the effects of the outer medium in the sensor response. The operation of the sensor device relies on the use of an asymmetric waveguide junction, which enable efficient separation of waveguide modes and therefore detection of their differences in behaviour. The proposed device is shown through simulations to achieve very small estimation errors below 5%, even for very high absorption coefficients of the outer medium of up to 80 times larger than that of the sensing layer. (C) 2015 Elsevier B.V. All rights reserved.
机译:在高吸收性微流体通道中测量单一分析物一直是一个挑战。即使具有高度选择性的传感层,其他化学物质也会影响对分析物的询问。在e逝场感测的情况下,使the逝尾部与感测层厚度匹配是困难的。尾部通常会超出传感层,从而在测量中引入噪声和杂散误差,并随分析物浓度的增加而增大。因此,在这项工作中,我们建议使用一种简单的多模e逝波导管传感器,以消除这种常见的杂散效应。所提出的模式选择感测系统利用不同引导模式之间的灵敏度差异来检测外部介质对传感器响应的影响。传感器装置的操作依赖于非对称波导结的使用,该非对称波导结使得能够有效分离波导模式,并因此检测其行为差异。通过仿真显示,所建议的设备即使在外部介质的吸收系数高达传感层最大80倍的情况下,也能实现低于5%的很小估计误差。 (C)2015 Elsevier B.V.保留所有权利。

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