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Characterization and application of new photopolv mer recording media for usage in holography

机译:全息照相用新型光聚合记录介质的表征与应用

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Holography, holographic interferometry, or holographic optical elements manufacturing are compromised by the shortcomings of used holographic recording materials. Classical materials such as silver-halide emulsions, their excellent sensitivity, resolution, spectral range are eclipsed by the necessity of wet chemical processing and by inherent noise. Other commonly used holographic materials are not much better, some of their parameters are good however compromised with other weak parameters. Recently, it has seemed that new properly designed and manufactured photopolymer recording materials can overcome most of these problems. The sandwich structure (glass-polymer-glass) of the recording media can be easily prepared from commercial available liquid photopolymers (Polygrama) and well balanced holographic recording media are obtained by this approach. This paper presents testing results and preliminary conclusions of sandwich photopolymer structures employed as a holographic recording media. Characterization of recording structures as well as real life holographic usage examples are done. Influence of development and hardening of photopolymer are shown. Innovative formula of used photopolymer enables easily to reach diffraction efficiency of structures close to 100 % with low dose of exposition energy.
机译:全息照相,全息照相干涉术或全息光学元件的制造因使用过的全息记录材料的缺点而受到损害。诸如卤化银乳剂之类的经典材料,其出色的灵敏度,分辨率,光谱范围被湿法化学加工的必要性和固有噪声所掩盖。其他常用的全息材料也不是很好,它们的一些参数很好,但是却受其他弱参数的影响。近来,似乎新的适当设计和制造的光聚合物记录材料可以克服大多数这些问题。记录介质的夹层结构(玻璃-聚合物-玻璃)可以很容易地由市售的液态光聚合物(Polygrama)制备,并且通过这种方法可以获得平衡良好的全息记录介质。本文介绍了用作全息记录介质的夹层光敏聚合物结构的测试结果和初步结论。完成了记录结构的表征以及现实生活中的全息用法示例。显示了光敏聚合物显影和硬化的影响。使用过的光敏聚合物的创新配方可以在低剂量曝光能量的情况下轻松达到接近100%的结构衍射效率。

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