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Dynamic Plasmonic Pixels

机译:动态等离子体像素

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摘要

Information display utilizing plasmonic color generation has recently emerged as an alternative paradigm to traditional printing and display technologies. However, many implementations so far have either presented static pixels with a single display state or rely on relatively slow switching mechanisms such as chemical transformations or liquid crystal transitions. Here, we demonstrate spatial, spectral, and temporal control of light using dynamic plasmonic pixels that function through the electric-field induced alignment of plasmonic nanorods in organic suspensions. By tailoring the geometry and composition (Au and Au@Ag) of the nanorods, we illustrate light modulation across a significant portion of the visible and infrared spectrum (600-2400 nm). The fast (similar to 30 mu s), reversible nanorod alignment is manifested as distinct color changes, characterized by shifts of observed chromaticity and luminance. Integration into larger device architectures is showcased by the fabrication of a seven-segment numerical indicator. The control of light on demand achieved in these dynamic plasmonic pixels establishes a favorable platform for engineering high-performance optical devices.
机译:利用等离子体颜色发电的信息显示最近作为传统印刷和展示技术的替代范例出现。然而,到目前为止,许多实施方式具有呈现单个显示状态的静态像素,或者依赖于诸如化学转换或液晶转换的相对慢的切换机构。在这里,我们使用通过电场诱导的有机悬浮液中的等离子体纳米棒的电场诱导对准的动态等离子体像素来展示光的空间,光谱和时间控制。通过剪裁纳米棒的几何形状和组合物(Au和Au @ Ag),我们在可见光和红外光谱(600-2400nm)的大部分中示出了光调制。快速(类似于30μs),可逆纳米棒对准表现为不同的颜色变化,其特征在于观察到的色度和亮度的变化。通过制造七段数值指示器的制造展示了集成到较大的设备架构中。在这些动态等离子体像素中实现的灯的控制对工程高性能光学器件的有利平台建立了一个有利的平台。

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