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LED-Cured Reflection Gratings Stored in an Acrylate-Based Photopolymer

机译:存储在丙烯酸酯基光敏聚合物中的LED固化反射光栅

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摘要

The storage of volume holographic reflection gratings in low-toxicity photopolymers represents a challenge at present since they can be used in many important applications such as biosensors and holographic optical elements. In this context, an acrylate-based photopolymer developed in our research group was employed to study the recording of unslanted holographic reflection gratings at high spatial frequencies. The optimal preparation conditions of the photopolymer layers were determinated. The diffraction efficiencies are measured in both recording and curing stage and a comparative study of these values was realized. In addition, a theoretical study using Kogelnik’s coupled wave theory was carried out with the aim of understanding the diffraction efficiency behaviour of both processes. In this work, a maximum diffraction efficiency of 14.1% was reached after a curing process in 150 µm layers at a recording wavelength of 488 nm. This value represents a good result compared to that reported in the literature and opens the way to reflection mode holography research using low-toxicity material.
机译:在低毒性光敏聚合物中存储体全息反射光栅目前是一个挑战,因为它们可以用于许多重要的应用中,例如生物传感器和全息光学元件。在这种情况下,我们研究小组开发的丙烯酸酯基光敏聚合物被用于研究在高空间频率下不倾斜的全息反射光栅的记录。确定了光敏聚合物层的最佳制备条件。在记录和固化阶段都测量了衍射效率,并实现了对这些值的比较研究。此外,还进行了使用Kogelnik耦合波理论的理论研究,目的是了解这两个过程的衍射效率行为。在这项工作中,在150 µm的层中在488 nm的记录波长下进行固化处理后,最大衍射效率达到了14.1%。与文献报道的相比,该值代表了良好的结果,并为使用低毒性材料的反射模式全息照相研究开辟了道路。

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