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首页> 外文期刊>Photonic Sensors >High Sensitive Methane Sensor With Temperature Compensation Based on Selectively Liquid-Infiltrated Photonic Crystal Fibers
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High Sensitive Methane Sensor With Temperature Compensation Based on Selectively Liquid-Infiltrated Photonic Crystal Fibers

机译:基于选择性浸渗光子晶体光纤的带温度补偿的高灵敏度甲烷传感器

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摘要

A highly sensitive and temperature-compensated methane sensor based on a liquid-infiltrated photonic crystal fiber (PCF) is proposed. Two bigger holes near the core area are coated with a methane-sensitive compound film, and specific cladding air holes are infiltrated into the liquid material to form new defective channels. The proposed sensor can achieve accurate measurement of methane concentration through temperature compensation. The sensitivity can reach to 20.07 nm/% with a high linearity as the methane concentration is within the range of 0%–3.5% by volume. The proposed methane sensor can not only improve the measurement accuracy, but also reduce the metrical difficulty and simplify the process.
机译:提出了一种基于液体渗透光子晶体光纤(PCF)的高灵敏度,温度补偿的甲烷传感器。靠近核心区域的两个较大的孔涂有对甲烷敏感的复合膜,特定的包层气孔渗入了液体材料中,形成了新的缺陷通道。所提出的传感器可以通过温度补偿实现甲烷浓度的准确测量。当甲烷浓度在0%-3.5%(体积)范围内时,灵敏度可以达到线性高的20.07 nm /%。提出的甲烷传感器不仅可以提高测量精度,而且可以降低测量难度,简化过程。

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