光学
相位恢复
波前
显微镜
扩散器(光学)
摄影术
分辨率(逻辑)
镜头(地质)
衍射
探测器
显微镜
数值孔径
图像分辨率
计算机科学
物理
材料科学
人工智能
傅里叶变换
波长
量子力学
光源
作者
Liming Yang,Yujin Lee,Ruihai Wang,Pengming Song,D. Candela,Tianbo Wang,Shaowei Jiang,Chengfei Guo,Xiaopeng Shao
出处
期刊:Optics Express
[The Optical Society]
日期:2023-10-03
卷期号:31 (21): 35003-35003
摘要
Conventional multi-height microscopy techniques introduce different object-to-detector distances to obtain multiple measurements for phase retrieval. However, surpassing the diffraction limit imposed by the numerical aperture (NA) of the objective lens remains a challenging task. Here, we report a novel structured modulation multi-height microscopy technique for quantitative high-resolution imaging. In our platform, a thin diffuser is placed in between the sample and the objective lens. By translating the diffuser to different axial positions, a sequence of modulated intensity images is captured for reconstruction. The otherwise inaccessible high-resolution object information can thus be encoded into the optical system for detection. In the construction process, we report a ptychographic phase retrieval algorithm to recover the existing wavefront of the complex object. We validate our approach using a resolution target, a phase target, and various biological samples. We demonstrate a ∼4-fold resolution gain over the diffraction limit. We also demonstrate our approach to achieve a 6.5 mm by 4.3 mm field of view and a half-pitch resolution of 1.2 µm. The reported methodology provides a portable, turnkey solution for quantitative high-resolution imaging with potential applications in disease diagnosis, sample screening, and other fields.
科研通智能强力驱动
Strongly Powered by AbleSci AI