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用于全息传感器和交互式全息图的多功能设计与制造的自处理光聚合物材料。

Self-processing photopolymer materials for versatile design and fabrication of holographic sensors and interactive holograms.

作者信息

Cody Dervil, Gul Sabad-E, Mikulchyk Tatsiana, Irfan Muhammad, Kharchenko Anastasia, Goldyn Kamila, Martin Suzanne, Mintova Svetlana, Cassidy John, Naydenova Izabela

出版信息

Appl Opt. 2018 Aug 1;57(22):E173-E183. doi: 10.1364/AO.57.00E173.

Abstract

The aim of this paper is to discuss the benefits as well as the limitations of utilizing photopolymer materials in the design of holograms that are responsive to changes in their environment, such as changes in the concentration of a specific substance, temperature, and pressure. Three different case studies are presented, including both surface and volume phase holograms, in order to demonstrate the flexibility in the approach of utilizing holographic photopolymers for the design of sensors and interactive optical devices. First, a functionalized surface relief hologram is demonstrated to operate as an optical sensor for the detection of metal ions in water. The sensitivity and selectivity of the sensor are investigated. The second example demonstrates a volume transmission hologram recorded in a temperature-sensitive photopolymer and the memory effects of its exposure to elevated temperature. Finally, a pressure-sensitive reflection hologram that changes color under application of pressure is characterized, and its potential application in document authentication is described.

摘要

本文旨在探讨在设计对环境变化(如特定物质浓度、温度和压力变化)有响应的全息图时使用光聚合物材料的益处和局限性。本文展示了三个不同的案例研究,包括表面和体相位全息图,以证明利用全息光聚合物设计传感器和交互式光学器件方法的灵活性。首先,展示了一种功能化表面浮雕全息图作为检测水中金属离子的光学传感器,并研究了该传感器的灵敏度和选择性。第二个例子展示了记录在对温度敏感的光聚合物中的体透射全息图及其在高温下曝光的记忆效应。最后,对一种在施加压力时会变色的压敏反射全息图进行了表征,并描述了其在文件认证中的潜在应用。

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