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Plasmonic colour laser printing

机译:等离子体彩色激光打印

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摘要

Colour generation by plasmonic nanostructures and metasurfaces has several advantages over dye technology: reduced pixel area, sub-wavelength resolution and the production of bright and non-fading colours. However, plasmonic colour patterns need to be pre-designed and printed either by e-beam lithography (EBL) or focused ion beam (FIB), both expensive and not scalable processes that are not suitable for post-processing customization. Here we show a method of colour printing on nanoimprinted plasmonic metasurfaces using laser post-writing. Laser pulses induce transient local heat generation that leads to melting and reshaping of the imprinted nanostructures. Depending on the laser pulse energy density, different surface morphologies that support different plasmonic resonances leading to different colour appearances can be created. Using this technique we can print all primary colours with a speed of 1 ns per pixel, resolution up to 127,000 dots per inch (DPI) and power consumption down to 0.3 nJ per pixel.
机译:通过等离激元纳米结构和超颖表面产生的颜色比染料技术具有多个优势:减小的像素面积,亚波长分辨率以及产生明亮和不褪色的颜色。但是,等离子体彩色图案需要通过电子束光刻(EBL)或聚焦离子束(FIB)进行预先设计和打印,这既昂贵又不具有可扩展性,不适合后期处理定制。在这里,我们展示了一种使用激光后写技术在纳米压印等离子超表面上进行彩色印刷的方法。激光脉冲会引起瞬时的局部热量产生,从而导致被压印的纳米结构熔化和重塑。根据激光脉冲能量密度,可以创建支持不同等离子体共振的不同表面形态,从而导致不同的颜色外观。使用这种技术,我们可以以每像素1 ns的速度,高达127,000点每英寸的点(DPI)的速度和每像素0.3 ns nJ的功耗打印所有原色。

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