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Polarization-independent actively tunable colour generation on imprinted plasmonic surfaces

机译:压印等离子体表面上与偏振无关的主动可调颜色生成

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摘要

Structural colour arising from nanostructured metallic surfaces offers many benefits compared to conventional pigmentation based display technologies, such as increased resolution and scalability of their optical response with structure dimensions. However, once these structures are fabricated their optical characteristics remain static, limiting their potential application. Here, by using a specially designed nanostructured plasmonic surface in conjunction with high birefringence liquid crystals, we demonstrate a tunable polarization-independent reflective surface where the colour of the surface is changed as a function of applied voltage. A large range of colour tunability is achieved over previous reports by utilizing an engineered surface which allows full liquid crystal reorientation while maximizing the overlap between plasmonic fields and liquid crystal. In combination with imprinted structures of varying periods, a full range of colours spanning the entire visible spectrum is achieved, paving the way towards dynamic pixels for reflective displays.
机译:与传统的基于颜料的显示技术相比,由纳米结构化的金属表面产生的结构色具有许多优势,例如其分辨率和光学响应随结构尺寸的可扩展性。然而,一旦制造了这些结构,它们的光学特性就保持静态,限制了它们的潜在应用。在这里,通过结合使用特殊设计的纳米结构等离子表面和高双折射液晶,我们展示了可调的偏振无关反射表面,其中,表面颜色随施加电压的变化而变化。通过利用工程设计的表面,可以实现完全的液晶重新定向,同时最大化等离激元场和液晶之间的重叠,从而实现了较以往的报告而言大范围的颜色可调性。结合变化周期的压印结构,可实现跨越整个可见光谱的全范围颜色,从而为反射型显示器的动态像素铺平了道路。

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