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基于多焦点三维彩色印刷品的光学烟花

Optical Fireworks Based on Multifocal Three-Dimensional Color Prints.

作者信息

Wang Hongtao, Wang Hao, Ruan Qifeng, Tan You Sin, Qiu Cheng-Wei, Yang Joel K W

机构信息

Engineering Product Development, Singapore University of Technology and Design, Singapore 487372, Singapore.

Department of Electrical and Computer Engineering, National University of Singapore, Singapore 117583, Singapore.

出版信息

ACS Nano. 2021 Jun 22;15(6):10185-10193. doi: 10.1021/acsnano.1c02131. Epub 2021 May 21.

Abstract

Colorful three-dimensional (3D) prints are promising as practical anticounterfeiting labels with easily recognizable and striking visual effects. However, existing colorful 3D displays either require specific illumination conditions with multiple coherent lasers, hence suffer from speckles, or are unsuitable as passive labels. Here, we report a concept of a virtual 3D color object consisting of colorful focal spots in free space. The colors and corresponding "floating heights" of these spots are independently controlled the design of 3D printed microlens profiles and heights of nanopillars that act as structural-color filters. Despite the unremarkable appearance of the printed substrate under both optical and electron microscopy, illumination with incoherent white light reveals information in the form of bright colorful spots appearing at designated heights above the plane of the substrate. The term "optical fireworks" refers to the way these spots appear and disappear under an optical microscope as one continuously shifts the focal plane. Our 3D printed optical fireworks security labels introduce applications for optical elements integrated with nanostructures in 3D colorful displays and anticounterfeiting labels.

摘要

色彩斑斓的三维(3D)打印品有望成为实用的防伪标签,具有易于识别且引人注目的视觉效果。然而,现有的彩色3D显示器要么需要特定的照明条件以及多个相干激光器,因此会产生斑点,要么不适合用作无源标签。在此,我们报告了一种由自由空间中的彩色焦点组成的虚拟3D彩色物体的概念。这些斑点的颜色和相应的“浮动高度”是通过3D打印微透镜轮廓以及用作结构色滤光片的纳米柱的高度来独立控制的。尽管在光学显微镜和电子显微镜下打印基板的外观并不显眼,但用非相干白光照明时,会在基板平面上方指定高度处出现明亮的彩色斑点,从而显示出信息。术语“光学烟花”指的是当人们在光学显微镜下连续移动焦平面时,这些斑点出现和消失的方式。我们的3D打印光学烟花安全标签为3D彩色显示器和防伪标签中与纳米结构集成的光学元件引入了应用。

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