光学
全息术
极化(电化学)
物理
数字全息显微术
表征(材料科学)
穆勒微积分
多路复用
干涉测量
全息干涉法
各向异性
基质(化学分析)
显微镜
正交偏振光谱成像
相位恢复
数字全息术
相(物质)
计量学
相位调制
矩阵法
材料科学
限制
图像处理
压缩传感
双折射
迭代重建
傅里叶变换
云纹
作者
H.C. Liu,Chengxin Zhou,Yue Liu,Yufang Liu,Xiaoxu Lü,Zhengyang Liu,Xuefeng Jin,Kun Yu
出处
期刊:Optics Letters
[Optica Publishing Group]
日期:2025-09-25
卷期号:50 (21): 6694-6694
被引量:2
摘要
Polarization holographic microscopy (PHM) enables precise characterization of the Jones matrix of anisotropic media (AM), presenting ubiquitous applications in material characterization and biomedical diagnostics. However, existing PHM systems struggle to achieve single-shot imaging while maintaining high spatiotemporal phase sensitivity, limiting the measurement accuracy and imaging efficiency. Here, we present a common-path single-shot Jones matrix holographic microscopy based on partially coherent illumination. By generating two mutually incoherent orthogonally polarized beams for simultaneous illumination and incorporating polarization multiplexing with angle multiplexing, the method enables synchronous acquisition of two orthogonal carrier interferograms without interferometric crosstalk, thereby realizing single-shot reconstruction of the Jones matrix of AM. Benefiting from partially coherent illumination and a stable common-path design, the system significantly enhances spatiotemporal phase sensitivity. The accuracy of the proposed method is validated through Jones matrix reconstruction of polystyrene microspheres and polarizers. The applicability is further demonstrated in the measurement of diverse AM, highlighting its extraordinary potential for anisotropic material characterization and biomedical diagnostics.
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