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Electrically ReconfigurableLiquid Crystalline Mirrors

机译:电气可重配置液晶镜

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摘要

Reconfigurable optical materials are critical to realizing light control in eyewear or architectural windows. Here, we report on the electrical reconfiguration of the selective reflection of cholesteric liquid crystals (LCs). The distinctive responses detailed here are enabled by the preparation of a structurally chiral polymer stabilizing network that enforces anchoring of a low-molar-mass liquid crystalline media with positive dielectric anisotropy. The pitch of the reflective optical elements is directly regulated by a dc field, resulting in red or blue reflection wavelength tuning or broadening. The use of the positive dielectric LC host in concert with optimization of the material preparation conditions allows for reorientation of the LC molecules to achieve an optically clear state (homeotropic orientation) by the application of an ac field. In this way, the selective reflection of the optical elements can be moved, widened, and turned on and off. The electro-optic characteristics of these materials are another step forward to enabling the use of these materials in optics and photonics.
机译:可重新配置的光学材料对于实现眼镜或建筑窗户的光线控制至关重要。在这里,我们报告胆甾型液晶(LCs)选择性反射的电重构。通过制备结构性手性聚合物稳定化网络,可以实现此处详述的独特响应,该网络可增强具有正介电各向异性的低摩尔质量液晶介质的锚固。反射光学元件的间距直接由dc场调节,导致红色或蓝色反射波长调谐或加宽。正介电LC主体与材料制备条件的优化配合使用,可以通过施加ac场使LC分子重新取向,从而获得光学透明的状态(垂直取向)。这样,光学元件的选择性反射可以被移动,加宽以及开启和关闭。这些材料的电光特性是将这些材料用于光学和光子学的又一步。

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