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Hollow-core negative curvature fibers for application in optical gas sensors

机译:中空负曲率光纤,用于光学气体传感器

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We demonstrate the potential of applying hollow core and negative curvature optical fibers (HC-NCF) as efficient sensors to monitor the concentration of three high-toxicity gases: methane (CH_4), carbon monoxide (CO), and nitrogen monoxide (NO). Numerical simulations demonstrate that the insertion of holes in such fibers guarantees the entry of these gases into their hollow core and allows strong interaction of these gases with the low-loss mode propagating in the HC-NCF. This interaction between light and gas in spectral regions with high gas absorption allows one to monitor reduced concentrations of these gases present in the environment simply by monitoring the optical power at the fiber output. The results show a linear behavior of propagation losses as a function of concentrations of 0% to 100% of CO and NO gas, and for concentrations of 0% to 5% of CH_4 gas. This linearity between the propagation losses and the variation of the concentrations of gases in the environment can promote its application in healthcare and environment, to monitor low concentrations of gases ensuring high Speed and accuracy.
机译:我们证明了应用空心和负曲率光纤(HC-NCF)作为有效的传感器来监视三种高毒性气体的浓度的潜力,这些气体是甲烷(CH_4),一氧化碳(CO)和一氧化氮(NO)。数值模拟表明,在此类纤维中插入孔可确保这些气体进入其空心,并允许这些气体与HC-NCF中传播的低损耗模式强烈相互作用。具有高气体吸收率的光谱区域中的光与气体之间的这种相互作用使人们可以仅通过监视光纤输出端的光功率来监视环境中存在的这些气体的浓度降低。结果表明,传播损失的线性行为与浓度为0%至100%的CO和NO气体以及浓度为0%至5%的CH_4气体有关。传播损失与环境中气体浓度变化之间的这种线性关系可以促进其在医疗保健和环境中的应用,以监测低浓度气体,从而确保高速度和准确性。

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