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首页> 外文期刊>Journal of Microscopy >Angular distribution of polarized photon-pairs in a scattering medium with a Zeeman laser scanning confocal microscope
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Angular distribution of polarized photon-pairs in a scattering medium with a Zeeman laser scanning confocal microscope

机译:塞曼激光扫描共聚焦显微镜在散射介质中偏振光子对的角度分布

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摘要

A novel confocal microscope designed for use with turbid media is proposed. We use a Zeeman laser as the light source. Based on the properties of two-frequency polarized photon-pairs and the common-path feature of polarized photon-pairs with heterodyne detection employed in the proposed confocal microscope, three gatings (spatial filtering gating, polarization gating and spatial coherence gating) are thus simultaneously incorporated in the microscope. Experimental results for the angular distribution of polarized photon-pairs in a scattering medium indicate that polarization gating and spatial coherence gating preclude the detection of multiply scattered photons, whereas the pinhole selects the least scattered photon-pairs. Thus, better performance for axial resolution than can be obtained with a conventional confocal microscope is demonstrated experimentally. In addition, the proposed microscope is able to either look deeper into a turbid medium or work with a denser medium; furthermore, the axial resolution is improved.
机译:提出了一种设计用于混浊介质的新型共聚焦显微镜。我们使用塞曼激光作为光源。基于双频偏振光子对的特性以及共聚焦显微镜中采用外差检测的偏振光子对的共路径特性,可以同时进行三种门控(空间滤波门控,偏振门控和空间相干门控)纳入显微镜。散射介质中偏振光子对的角度分布的实验结果表明,偏振门控和空间相干门控无法检测多重散射的光子,而针孔选择散射最少的光子对。因此,通过实验证明了比使用常规共焦显微镜可获得的更好的轴向分辨率性能。另外,所提出的显微镜能够更深入地观察混浊的介质,或者使用密度更高的介质。此外,改善了轴向分辨率。

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