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Electrically controlled liquid crystal plasmonic metamaterials

机译:电控液晶等离子体超材料

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摘要

In this work we experimentally demonstrate high-contrast electrical modulation of the near-IR spectra of plasmonic metamaterials, hybridised with liquid crystals by exploiting volume and, for the first time, in-plane switching regimes. We also show that in the resulting hybrid liquid-crystal (LC) optical cells the metamaterial structure can replace all three essential components of a LC device, namely (i) LC-alignment layer; (ii) transparent electrode and (iii) polarizer; making the hybrid cell much more compact than the conventional LC devices and easy to integrate with plasmonic and nano-photonic circuits. The relative ease of on-demand engineering of resonant bands (i.e. colours) in plasmonic nano-structures is particularly appealing for applications in high-resolution and emerging micro-display technologies, such as near-to-eye and virtual retina displays.
机译:在这项工作中,我们实验性地证明了等离激元超材料的近红外光谱的高对比度电调制,该等离激元超材料通过利用体积以及首次利用面内切换机制与液晶杂交。我们还表明,在所得的混合液晶(LC)光学元件中,超材料结构可以代替LC器件的所有三个基本组件,即(i)LC对准层; (ii)透明电极和(iii)偏光片;与传统的LC设备相比,它使混合电池更加紧凑,并且易于与等离子体和纳米光子电路集成。等离子体纳米结构中共振带(即颜色)的按需工程设计相对容易,特别适合高分辨率和新兴的微型显示技术,例如近眼和虚拟视网膜显示器。

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