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彩色空间选择性成像:所见即所需。

Spatially Selective Imaging in Color: What You See is What You Want.

作者信息

Chan John You En, Rajesh Akshaya, Lin Xiaoyu, Wang Hao, Wang Hongtao, Zhou Xiaoyan, Qiu Cheng-Wei, Yang Joel K W

机构信息

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

School of Instrumentation and Optoelectronic Engineering, Beihang University, Beijing, 100191, China.

出版信息

Adv Sci (Weinh). 2025 Feb;12(7):e2411537. doi: 10.1002/advs.202411537. Epub 2024 Dec 27.

Abstract

Spatially selective imaging (SSI) involves sampling a group of pixels from different positions on an encoded object to display a decoded image. Here, SSI is achieved by using off-axis cylindrical Fresnel lens arrays to decode multiple images from an encoded print of structural color pixels. Each image is optically retrieved by separately placing different "keys" (arrays of lenses in different pseudorandom configurations) over the same encoded print, and then each image is digitally reconstructed for visualization. In addition, a detailed analysis is presented on the designed lenses and pixels, which are all fabricated by two-photon polymerization lithography. Though Fresnel lenses are susceptible to chromatic aberrations, the results show that they can be used for imaging pixels that produce a wide range of colors at low numerical aperture (NA ≈0.2). The images have acceptable color contrast, corresponding to a simulated normalized modulation transfer function (MTF) of ≈0.6 averaged across wavelengths in the visible spectrum. This work can find applications in optical information security devices.

摘要

空间选择性成像(SSI)涉及从编码物体上的不同位置对一组像素进行采样,以显示解码后的图像。在此,通过使用离轴圆柱形菲涅耳透镜阵列从结构彩色像素的编码打印中解码多个图像来实现SSI。通过在同一编码打印上分别放置不同的“密钥”(处于不同伪随机配置的透镜阵列)来光学检索每个图像,然后对每个图像进行数字重建以进行可视化。此外,还对通过双光子聚合光刻制造的设计透镜和像素进行了详细分析。尽管菲涅耳透镜容易出现色差,但结果表明它们可用于在低数值孔径(NA≈0.2)下对产生多种颜色的像素进行成像。这些图像具有可接受的颜色对比度,对应于在可见光谱波长范围内平均约为0.6的模拟归一化调制传递函数(MTF)。这项工作可在光学信息安全设备中找到应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b11/11831530/7a09ef90b53e/ADVS-12-2411537-g004.jpg

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