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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >High-efficiency and fast-switching field-induced tunable phase grating using polymer-stabilized in-plane switching liquid crystals with vertical alignment
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High-efficiency and fast-switching field-induced tunable phase grating using polymer-stabilized in-plane switching liquid crystals with vertical alignment

机译:使用聚合物稳定的垂直取向平面内开关液晶,实现高效,快速切换的场致可调相位光栅

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摘要

We demonstrate a high-efficiency and fast-switching phase grating based upon a polymer-stabilized liquid crystal device driven by in-plane switching electric field. Periodical modulation in field-induced refractive index profile is realized in the in-plane switching liquid crystal (LC) cells with vertical alignment, and voltage-dependent diffraction patterns are obtained. The diffraction efficiency of the LC phase grating is varied by voltage applied to the interdigitated electrodes, and the first-order diffraction efficiency of the device achieves 28.5% at 6.25 V mu m(-1). The dynamic response is improved by surface polymer stabilization. This device has potential advantages of versatile design and ease of fabrication.
机译:我们展示了一种基于面内切换电场驱动的聚合物稳定的液晶器件的高效,快速切换的相位光栅。在具有垂直取向的面内开关液晶(LC)单元中实现场致折射率分布的周期性调制,并且获得依赖于电压的衍射图案。 LC相光栅的衍射效率随施加到叉指电极上的电压而变化,并且该器件的一阶衍射效率在6.25 Vμm(-1)时达到28.5%。通过表面聚合物的稳定化改善了动态响应。该设备具有通用设计和易于制造的潜在优势。

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