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Liquid Crystal Enabled Dynamic Nanodevices

机译:液晶动态纳米器件

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摘要

Inspired by the anisotropic molecular shape and tunable alignment of liquid crystals (LCs), investigations on hybrid nanodevices which combine LCs with plasmonic metasurfaces have received great attention recently. Since LCs possess unique electro-optical properties, developing novel dynamic optical components by incorporating nematic LCs with nanostructures offers a variety of practical applications. Owing to the large birefringence of LCs, the optical properties of metamaterials can be electrically or optically modulated over a wide range. In this review article, we show different elegant designs of metasurface based nanodevices integrated into LCs and explore the tuning factors of transmittance/extinction/scattering spectra. Moreover, we review and classify substantial tunable devices enabled by LC-plasmonic interactions. These dynamically tunable optoelectronic nanodevices and components are of extreme importance, since they can enable a significant range of applications, including ultra-fast switching, modulating, sensing, imaging, and waveguiding. By integrating LCs with two dimensional metasurfaces, one can manipulate electromagnetic waves at the nanoscale with dramatically reduced sizes. Owing to their special electro-optical properties, recent efforts have demonstrated that more accurate manipulation of LC-displays can be engineered by precisely controlling the alignment of LCs inside small channels. In particular, device performance can be significantly improved by optimizing geometries and the surrounding environmental parameters.
机译:受各向异性分子形状和液晶(LC)的可调排列的启发,结合LC与等离子超表面的混合纳米器件的研究近来受到极大关注。由于液晶显示器具有独特的电光特性,因此通过将向列液晶显示器与纳米结构相结合来开发新颖的动态光学组件可提供多种实际应用。由于LC的大双折射,超材料的光学特性可以在很宽的范围内进行电或光调制。在这篇评论文章中,我们展示了集成到LC中的基于超颖表面的纳米器件的不同优雅设计,并探讨了透射率/消光/散射光谱的调谐因子。此外,我们回顾并分类了由LC-等离子相互作用实现的可调谐设备。这些动态可调的光电纳米器件和组件极为重要,因为它们可以实现广泛的应用,包括超快速切换,调制,感测,成像和波导。通过将LC与二维超表面集成在一起,人们可以以大大减小的尺寸在纳米级操纵电磁波。由于其特殊的光电特性,最近的努力表明,通过精确控制小通道内LC的排列,可以设计出更精确的LC显示器操作。特别是,通过优化几何形状和周围环境参数,可以显着提高设备性能。

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