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Holographic humidity response of slanted gratings in moisture-absorbing acrylamide photopolymer

机译:吸湿丙烯酰胺光聚合物中倾斜光栅的全息湿度响应

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摘要

Holographic humidity response is characterized in detail using transmission and reflection geometry in moisture-absorbing acrylamide photopolymer. The diffraction spectrum and its temporal evolution at various relative humidity are measured and analyzed. The quantitative relations between relative humidity and holographic properties of slanted gratings are determined. The responsibility of holographic gratings for various relative humidity is observed by the spectrum response of gratings. The extracted humidity constants reflect the applicability of reflection and transmission gratings at different humidity regions. The humidity reversibility experiment is achieved for confirming repeatability of the sensor. These experiments provide a probability for improving the applicability of a holographic humidity sensor. Finally, the extended diffusion model is derived by introducing the expansion coefficient to describe the dynamic swelling process. This work can accelerate development of the holographic sensor and provide a novel strategy for exploring the swelling mechanism of photopolymer. (C) 2015 Optical Society of America
机译:使用吸湿性丙烯酰胺光聚合物中的透射和反射几何结构来详细表征全息湿度响应。测量和分析了在各种相对湿度下的衍射光谱及其随时间的变化。确定了相对湿度和倾斜光栅的全息特性之间的定量关系。全息光栅对各种相对湿度的作用是通过光栅的光谱响应来观察的。提取的湿度常数反映了反射光栅和透射光栅在不同湿度区域的适用性。进行湿度可逆性实验以确认传感器的可重复性。这些实验提供了改善全息湿度传感器的适用性的可能性。最后,通过引入膨胀系数来描述动态溶胀过程,导出了扩展扩散模型。这项工作可以加快全息传感器的发展,并为探索光敏聚合物的溶胀机理提供了一种新颖的策略。 (C)2015年美国眼镜学会

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