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Holographic transmission gratings stored in a hydrogel matrix

机译:存储在水凝胶基质中的全息透射光栅

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The development and optimization of photopolymers in which time-stable holographic grating can be stored when the material is immersed in an aqueous medium represent a challenge at present. In this sense, the aim of this work was the fabrication of unslanted transmission gratings in a hydrogel matrix which incorporates in its molecular structure a monomer (2-Methacryloyloxyethyl phosphorylcholine) that can act as an anti-fouling agent. The dependence of the diffraction efficiency on the thickness of the hydrogel matrix and the stability of the transmission gratings immersed in water were also studied. An increment in the diffraction efficiency up to 47 % was observed after a washing stage. After two days immersed in water, the holograms showed high stability even though the diffraction efficiency decreased to 37%. The optical parameters were obtained by fitting procedure through Kogelnik's coupled wave theory.
机译:当将材料浸入水性介质中时,可以存储时间稳定的全息光栅的光敏聚合物的开发和优化目前是一个挑战。从这个意义上讲,这项工作的目的是在水凝胶基质中制造不倾斜的透射光栅,在其分子结构中掺入可以用作防污剂的单体(2-甲基丙烯酰氧基乙基磷酰胆碱)。还研究了衍射效率与水凝胶基质厚度的关系以及浸入水中的透射光栅的稳定性。在洗涤阶段之后,观察到衍射效率的增加高达47%。浸入水中两天后,即使衍射效率降至37%,全息图也显示出高稳定性。光学参数是通过Kogelnik的耦合波理论通过拟合程序获得的。

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