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用于有源颜色可调液晶透射像素的表面等离子体纳米孔电极。

Plasmonic nanohole electrodes for active color tunable liquid crystal transmissive pixels.

作者信息

Bartholomew Richard, Williams Calum, Khan Ammar, Bowman Richard, Wilkinson Timothy

出版信息

Opt Lett. 2017 Jul 15;42(14):2810-2813. doi: 10.1364/OL.42.002810.

Abstract

Plasmonic pixels have been shown to offer numerous advantages over pigment-based color filters used in modern commercial liquid crystal (LC) displays. However, wideband dynamic tunability across the visible spectrum remains challenging. We experimentally demonstrate transmissive electrically tunable LC-nanohole pixels operating across the visible spectrum with unpolarized input light. An ultrathin Al nanohole electrode is designed to exhibit a polarized spectral response based on surface plasmon resonances. An output analyzer in combination with a nematic LC layer enables pixel color to be electronically controlled through an applied voltage across the device, where LC reorientation leads to tunable mixing of the relative contributions from the plasmonic color input. The nanostructured Al layer, acting as a combined electrode, polarizer, and functional color filter, is highly promising for electro-optic display applications.

摘要

与现代商用液晶(LC)显示器中使用的基于颜料的彩色滤光片相比,等离子体像素已显示出诸多优势。然而,在可见光谱范围内实现宽带动态可调性仍然具有挑战性。我们通过实验证明了在非偏振输入光下,跨可见光谱工作的透射式电可调LC-纳米孔像素。设计了一种超薄铝纳米孔电极,基于表面等离子体共振表现出偏振光谱响应。输出分析仪与向列型液晶层相结合,可通过施加在器件上的电压对像素颜色进行电子控制,其中液晶的重新取向导致等离子体颜色输入的相对贡献的可调混合。作为组合电极、偏振器和功能性彩色滤光片的纳米结构铝层,在电光显示应用中极具前景。

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