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Characterization of Gas Absorption Modules Based on Flexible Mid-Infrared Hollow Waveguides

机译:基于柔性中红外空心波导的气体吸收模块的表征

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摘要

A new gas absorption module, the substrate-embedded hollow waveguide (eHWG) model, is proposed. It consists of a substrate with a curved channel and a hollow waveguide. The hollow waveguide is curved into the channel and works as a gas absorption cell as well as a transmission medium for mid-infrared light. Owing to the low loss property of the hollow waveguide, the signal-to-noise ratio (SNR) was improved for the sensing system. A polycarbonate (PC) base tube was used to obtain flexibility in the fabrication of the hollow waveguide. A silver (Ag) layer and a silver iodide (AgI) layer were inner-coated to ensure a low loss property at the fingerprint wavelength of methane gas. A sensing system was established using a Fourier transform infrared spectrometer (FTIR), an external detector, and an eHWG. Experimental investigations were carried on the sensing performance of eHWGs with various channel shapes. Comparison studies were made on eHWGs embedded with Ag-coated or Ag- and AgI-coated hollow waveguides. The Ag- and AgI-coated hollow waveguides with inner diameters of 0.7, 1.4, and 2.0 mm were used in the eHWGs. The large bore waveguide had low loss but high bending additional loss. The large bore waveguide had a low detection limit due to high coupling efficiency with the light source. A limit of detection (LOD) as low as 2.7 ppm was attained for the system using the eHWG with the long and large bore waveguide.
机译:提出了一种新的气体吸收模块,即嵌入衬底的空心波导(eHWG)模型。它由具有弯曲通道和空心波导的基板组成。中空波导弯曲成通道,并用作气体吸收池以及中红外光的传输介质。由于中空波导的低损耗特性,感测系统的信噪比(SNR)得到改善。聚碳酸酯(PC)基管用于在空心波导的制造中获得灵活性。内层涂覆银(Ag)层和碘化银(AgI)层,以确保在甲烷气体的指纹波长处具有低损耗特性。使用傅立叶变换红外光谱仪(FTIR),外部检测器和eHWG建立了传感系统。对各种通道形状的eHWG的传感性能进行了实验研究。对嵌入有镀银或镀银和镀银中空波导的eHWG进行了比较研究。在eHWG中使用内径为0.7、1.4和2.0 mm的涂有Ag和AgI的空心波导。大孔径波导具有低损耗,但弯曲附加损耗高。大口径波导由于与光源的耦合效率高而检测限低。使用带有长孔和大口径波导的eHWG的系统,检测限(LOD)达到了2.7 ppm。

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