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Two-way shift of wavelength in holographic sensing of organic vapor in nanozeolites dispersed acrylamide photopolymer

机译:纳米沸石分散的丙烯酰胺光聚合物中有机蒸气的全息感测中波长的双向移动

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摘要

Holographic sensing of alcohol organic vapor is characterized in detail at transmission and reflection geometries in Y nanozeolites dispersed acrylamide photopolymer. The two-way shift of the diffraction spectrum and its temporal evolution with various vapor concentrations are measured. Obvious blueshifts of diffraction spectrum peaks are observed and analyzed in two recording geometries. The competition mechanism between decreasing the average refractive index and swelling the grating fringe space is proposed for exploring the wavelength shift mechanism. In the reflection grating, as organic vapor increases, the redshift after the blueshift of the wavelength peaks are observed clearly. We further demonstrate the significance of this competition mechanism. In the low concentration region, at transmission <700 ppm and reflection <400 ppm in nanozeolites dispersed polymer, the blueshift of the wavelength is a significant factor in identifying an organic vapor with a low refractive index. These experimental results provide a probability for improving the applicability of a holographic sensor. This work can accelerate the development of the holographic sensing strategy and provide a novel identification method for organic vapor. (C) 2016 Optical Society of America
机译:在Y纳米沸石分散的丙烯酰胺光敏聚合物的透射和反射几何结构中,对醇有机蒸气的全息感测进行了详细描述。测量了衍射光谱的双向移动及其随各种蒸气浓度的时间演化。在两个记录几何中观察到并分析了衍射光谱峰的明显蓝移。提出了降低平均折射率与增大光栅条纹空间之间的竞争机制,以探索波长偏移机制。在反射光栅中,随着有机蒸气的增加,可以清楚地观察到波长峰值蓝移后的红移。我们进一步证明了这种竞争机制的重要性。在低浓度区域,在纳米沸石分散的聚合物中,透射率<700 ppm和反射率<400 ppm,波长的蓝移是识别具有低折射率的有机蒸气的重要因素。这些实验结果为改善全息传感器的适用性提供了可能性。这项工作可以加快全息传感策略的发展,并提供一种新颖的有机蒸气识别方法。 (C)2016美国眼镜学会

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