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首页> 外文期刊>Journal of optics >Humidity and temperature effect on properties of transmission gratings recorded in PVA/AA-based photopolymer layers
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Humidity and temperature effect on properties of transmission gratings recorded in PVA/AA-based photopolymer layers

机译:湿度和温度对PVA / AA基光敏聚合物层中记录的透射光栅性能的影响

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This paper explores the effects of humidity on gratings recorded in a polyvinylalcohol-acrylamide photopolymer medium. Investigation of the behaviour of transmission gratings exposed to high humidity is of significant interest for two reasons, firstly because the grating's sensitivity to humidity can be exploited for the development of irreversible humidity indicators, secondly because too much sensitivity to humidity can limit the use of these materials in applications where an environmentally stable hologram is needed. In this paper we focus on the effect of high humidity on the properties of volume phase transmission gratings recorded in PVA/AA photopolymer layers in the temperature range 8-24 degrees C. It has been found that although exposure to humidity changes the diffraction efficiency and Bragg angle of gratings, the effects are fully reversible if the temperatures are kept low. For example, when gratings were subjected to relative humidities of 80% and 90% at a temperature of 8 degrees C the observed changes were fully reversible. However, irreversible changes in diffraction efficiency, thickness, refractive index modulation and Bragg angle were observed when the temperature during the humidity exposure was higher than 16 degrees C. The magnitude of the irreversible changes depends strongly on the ambient temperature during the humidity exposure, the humidity level and also on the duration of the humidity exposure.
机译:本文探讨了湿度对聚乙烯醇-丙烯酰胺光敏聚合物介质中记录的光栅的影响。对暴露在高湿度下的透射光栅的性能的研究引起了人们极大的兴趣,原因有两个,首先,因为可以利用光栅对湿度的敏感性来开发不可逆的湿度指示器,其次,因为对湿度的敏感性过高会限制这些光栅的使用。在需要环境稳定的全息图的应用中使用的材料。在本文中,我们着眼于高湿度对8-24摄氏度温度范围内PVA / AA光聚合物层中记录的体相透射光栅性能的影响。已发现,尽管暴露于湿气会改变衍射效率和光栅的布拉格角,如果保持较低的温度,效果是完全可逆的。例如,当光栅在8摄氏度的温度下经受80%和90%的相对湿度时,观察到的变化是完全可逆的。然而,当暴露于潮湿环境中的温度高于16摄氏度时,观察到衍射效率,厚度,折射率调制和布拉格角的不可逆变化。不可逆变化的幅度在很大程度上取决于潮湿环境下的环境温度,湿度水平以及受潮时间。

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