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From the Cover: Vivid full-color aluminum plasmonic pixels

机译:从封面开始:生动的全彩铝等离子体像素

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摘要

Aluminum is abundant, low in cost, compatible with complementary metal-oxide semiconductor manufacturing methods, and capable of supporting tunable plasmon resonance structures that span the entire visible spectrum. However, the use of Al for color displays has been limited by its intrinsically broad spectral features. Here we show that vivid, highly polarized, and broadly tunable color pixels can be produced from periodic patterns of oriented Al nanorods. Whereas the nanorod longitudinal plasmon resonance is largely responsible for pixel color, far-field diffractive coupling is used to narrow the plasmon linewidth, enabling monochromatic coloration and significantly enhancing the far-field scattering intensity of the individual nanorod elements. The bright coloration can be observed with p-polarized white light excitation, consistent with the use of this approach in display devices. The resulting color pixels are constructed with a simple design, are compatible with scalable fabrication methods, and provide contrast ratios exceeding 100:1.
机译:铝含量丰富,成本低廉,与互补金属氧化物半导体制造方法兼容,并且能够支持跨越整个可见光谱的可调谐等离子体共振结构。然而,Al在彩色显示器中的使用受到其固有的宽光谱特征的限制。在这里,我们表明,可以从取向的Al纳米棒的周期性图案中产生生动,高度极化和可调范围大的彩色像素。纳米棒的纵向等离激元共振主要负责像素的颜色,而远场衍射耦合用于缩小等离激元的线宽,从而实现单色着色并显着增强各个纳米棒元素的远场散射强度。可以通过p偏振白光激发观察到明亮的色彩,这与在显示设备中使用此方法一致。所得的彩色像素采用简单的设计构造,与可扩展的制造方法兼容,并提供超过100:1的对比度。

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