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Light- and Neutron-Optical Properties of Holographic Transmission Gratings from Polymer-Ionic Liquid Composites with Submicron Grating Spacing

机译:具有亚微米光栅间距的聚合物离子液体复合材料的全息透射光栅的光和中子光学性质

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摘要

We investigate the applicability of polymer-ionic liquid composites as optical elements for light, as well as for slow neutrons. The gratings are recorded using two-beam mixing and are characterized experimentally based on their diffraction properties. We produced a set of samples differing in their thickness, ranging from 10 μm–100 μm. We demonstrate that it is possible to prepare transmission gratings with a lattice constant of Λ=480 nm, resulting in thick gratings for light, as well as neutrons. The presented samples show low optical losses in the Vis-UV spectrum and exhibit refractive index modulations of about 103 at λ=543 nm. However, further improvements have to be made to obtain efficient neutron optical components.
机译:我们研究了聚合物-离子液体复合材料作为光学元件以及慢中子的适用性。使用两光束混合记录光栅,并根据其衍射特性进行实验表征。我们制作了一组厚度从10μm至100μm不等的样品。我们证明了可以制备晶格常数为 的透射光栅。 Λ = 480 nm,从而形成用于光和中子的厚光栅。呈现的样品在Vis-UV光谱中显示出低的光学损耗,并表现出约 < mrow> 10 3 数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm5”> λ = 543 nm。但是,必须进行进一步的改进以获得有效的中子光学部件。

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