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Designing Tunable Microstructure Spectroscopic Gas Sensor Using Optofluidic Hollow-Core Photonic Crystal Fiber

机译:利用光流空心空心光子晶体光纤设计可调谐微结构光谱气体传感器

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摘要

A tunable slow-light hollow-core photonic crystal fiber (HPCF), applicable to miniaturized microstructure spectroscopic gas sensors is proposed. In the proposed structure, we have taken the advantage of the microfluidic infiltration technique to tune the slow-light regime so as to match the reference absorption line of the target gas sample, which is required for designing miniaturized gas sensors with reconfigurable detection sensitivity. The main feature of this structure is that the enhanced electrical field is strongly localized in the hollow-core of a photonic crystal fiber for any gas samples due to tunability of slow-light modes. We discuss the potential of slow light in HPCF for realizing compact and tunable gas sensor devices with low and high loss material. In particular, we present numerical results showing how this optofluidic microstructure can be used for detecting CO, CO, HS, CH, SO, and NO gases.
机译:提出了一种适用于小型化微结构光谱气体传感器的可调慢光空心光子晶体光纤(HPCF)。在提出的结构中,我们利用微流体渗透技术的优势来调整慢光状态,以匹配目标气体样品的参考吸收线,这是设计具有可重构检测灵敏度的小型气体传感器所必需的。这种结构的主要特征是,由于慢光模式的可调性,对于任何气体样品,增强的电场都强烈地局限在光子晶体光纤的空心中。我们讨论了HPCF中慢光在实现低损耗和高损耗材料的紧凑型和可调式气体传感器设备方面的潜力。特别是,我们提供了数值结果,显示了如何将此光流体微结构用于检测CO,CO,HS,CH,SO和NO气体。

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