微分干涉显微术
显微镜
光学
材料科学
干涉显微镜
分辨率(逻辑)
显微镜
相(物质)
电介质
干扰(通信)
图像分辨率
光电子学
相位成像
物理
光学显微镜
计算机科学
扫描电子显微镜
人工智能
频道(广播)
量子力学
计算机网络
作者
Hyounghan Kwon,Ehsan Arbabi,Seyedeh Mahsa Kamali,MohammadSadegh Faraji-Dana,Andrei Faraon
出处
期刊:Nature Photonics
[Nature Portfolio]
日期:2019-10-28
卷期号:14 (2): 109-114
被引量:310
标识
DOI:10.1038/s41566-019-0536-x
摘要
Quantitative phase imaging (QPI) of transparent samples plays an essential role in multiple biomedical applications, and miniaturizing these systems will enable their adoption into point-of-care and in vivo applications. Here, we propose a compact quantitative phase gradient microscope (QGPM) based on two dielectric metasurface layers, inspired by a classical differential interference contrast (DIC) microscope. Owing to the multifunctionality and compactness of the dielectric metasurfaces, the QPGM simultaneously captures three DIC images to generate a quantitative phase gradient image in a single shot. The volume of the metasurface optical system is on the order of 1 mm3. Imaging experiments with various phase resolution samples verify the capability to capture quantitative phase gradient data, with phase gradient sensitivity better than 92.3 mrad μm−1 and single-cell resolution. The results showcase the potential of metasurfaces for developing miniaturized QPI systems for label-free cellular imaging and point-of-care devices. Using two dielectric metasurface layers, a compact quantitative phase gradient microscope that can capture quantitative phase gradient images in a single shot is reported with phase gradient sensitivity better than 92.3 mrad μm−1 and single-cell resolution.
科研通智能强力驱动
Strongly Powered by AbleSci AI