Suppr超能文献

用于单次定量相位成像的非对称超表面光电探测器。

Asymmetric metasurface photodetectors for single-shot quantitative phase imaging.

作者信息

Liu Jianing, Wang Hao, Li Yuyu, Tian Lei, Paiella Roberto

机构信息

Department of Electrical and Computer Engineering and Photonics Center, Boston University, 8 Saint Mary's Street, Boston, MA 02215, USA.

出版信息

Nanophotonics. 2023 Aug 2;12(17):3519-3528. doi: 10.1515/nanoph-2023-0354. eCollection 2023 Aug.

Abstract

The visualization of pure phase objects by wavefront sensing has important applications ranging from surface profiling to biomedical microscopy, and generally requires bulky and complicated setups involving optical spatial filtering, interferometry, or structured illumination. Here we introduce a new type of image sensors that are uniquely sensitive to the local direction of light propagation, based on standard photodetectors coated with a specially designed plasmonic metasurface that creates an asymmetric dependence of responsivity on angle of incidence around the surface normal. The metasurface design, fabrication, and angle-sensitive operation are demonstrated using a simple photoconductive detector platform. The measurement results, combined with computational imaging calculations, are then used to show that a standard camera or microscope based on these metasurface pixels can directly visualize phase objects without any additional optical elements, with state-of-the-art minimum detectable phase contrasts below 10 mrad. Furthermore, the combination of sensors with equal and opposite angular response on the same pixel array can be used to perform quantitative phase imaging in a single shot, with a customized reconstruction algorithm which is also developed in this work. By virtue of its system miniaturization and measurement simplicity, the phase imaging approach enabled by these devices is particularly significant for applications involving space-constrained and portable setups (such as point-of-care imaging and endoscopy) and measurements involving freely moving objects.

摘要

通过波前传感对纯相位物体进行可视化在从表面轮廓测量到生物医学显微镜等众多领域都有重要应用,并且通常需要庞大且复杂的装置,涉及光学空间滤波、干涉测量或结构照明。在此,我们介绍一种新型图像传感器,它基于涂有特殊设计的等离子体超表面的标准光电探测器,对光传播的局部方向具有独特的敏感性,这种超表面会在表面法线周围产生响应度对入射角的不对称依赖。利用一个简单的光电导探测器平台展示了超表面的设计、制造以及角度敏感操作。然后,将测量结果与计算成像计算相结合,以表明基于这些超表面像素的标准相机或显微镜无需任何额外光学元件就能直接可视化相位物体,其具有低于10毫弧度的先进最小可检测相位对比度。此外,在同一像素阵列上具有相等且相反角度响应的传感器组合可用于单次进行定量相位成像,为此我们还开发了一种定制的重建算法。凭借其系统小型化和测量简单性,这些设备实现的相位成像方法对于涉及空间受限和便携式装置(如即时护理成像和内窥镜检查)的应用以及涉及自由移动物体的测量尤为重要。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验