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等离子像素:使用铝纳米结构实现大面积、宽色域的颜色再现。

The Plasmonic Pixel: Large Area, Wide Gamut Color Reproduction Using Aluminum Nanostructures.

机构信息

School of Physics and ‡Bio 21 Institute and School of Chemistry, The University of Melbourne , Melbourne, Victoria 3010, Australia.

出版信息

Nano Lett. 2016 Jun 8;16(6):3817-23. doi: 10.1021/acs.nanolett.6b01250. Epub 2016 May 13.

Abstract

We demonstrate a new plasmonic pixel (PP) design that produces a full-color optical response over macroscopic dimensions. The pixel design employs arrays of aluminum nanorods "floating" above their Babinet complementary screen, Concepts from conventional cyan magenta yellow key (CMYK) printing techniques and red green blue (RGB) digital displays are integrated with nanophotonic design principles and adapted to the production of PP elements. The fundamental PP color blocks of CMYK are implemented via a composite plasmonic nanoantenna/slot design and then mixed in a digital display analog 3 × 3 array to produce a broad-gamut PP. The PP goes beyond current investigations into plasmonic color production by enabling a broad color gamut and physically large plasmonic color features/devices/images. The use of nanorods also leads to a color response that is polarization tunable. Furthermore, devices are fabricated using aluminum and the fabrication strategy is compatible with inexpensive, rapid-throughput, nanoimprint approaches. Here we quantify, both computationally and experimentally, the performance of the PP. Spectral data from a test palette is obtained and a large area (>1.5 cm lateral dimensions) reproduction of a photograph is generated exemplifying the technqiue.

摘要

我们展示了一种新的等离子像素 (PP) 设计,它可以在宏观尺寸上产生全彩色光学响应。该像素设计采用了“漂浮”在其巴宾内互补屏上方的铝纳米棒阵列,从传统的青色品红色黄色键 (CMYK) 打印技术和红绿蓝 (RGB) 数字显示的概念与纳米光子学设计原则相结合,并适应了 PP 元件的生产。CMYK 的基本 PP 颜色块通过复合等离子体纳米天线/狭缝设计实现,然后在数字显示模拟 3×3 阵列中混合,以产生宽色域 PP。PP 通过实现宽色域和物理上较大的等离子体颜色特征/设备/图像,超越了当前对等离子体颜色产生的研究。纳米棒的使用还导致了可偏振调谐的颜色响应。此外,使用铝制造器件,并且制造策略与廉价、快速吞吐量、纳米压印方法兼容。在这里,我们通过计算和实验定量评估了 PP 的性能。从测试调色板获得了光谱数据,并生成了一张大尺寸 (>1.5 厘米横向尺寸) 照片的复制品,示例说明了该技术。

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