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Point-spread functions of a polarizing microscope equipped with high-numerical-aperture lenses

机译:配备高数值孔径透镜的偏光显微镜的点扩展功能

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摘要

In an effort to establish the imaging properties of a new type of polarized-light microscope, we recorded images of small, uniaxial, birefringent crystals. We show that the sequence of in-focus and out-of-focus images, the so-called point-spread function, of a submicroscopic crystal can be used to measure the orientation of its optic axis in three-dimensional space. By analogy to conoscopic images out-of-focus images reveal the changes in relative phase shift between the extraordinary and the ordinary rays that propagate at different directions through the crystal. We also present simulated images of a pointlike anisotropic scattering particle and compare these with our experimental findings. The theoretical model is based on a complete vectorial theory for partial coherent imaging by use of polarized light and high-numerical-aperture lenses.
机译:为了建立新型偏光显微镜的成像特性,我们记录了小的单轴双折射晶体的图像。我们表明,亚显微晶体的对焦和离焦图像序列(所谓的点扩展函数)可用于测量其光轴在三维空间中的方向。类似于锥镜图像,散焦图像揭示了在不同方向通过晶体传播的异常光线和普通光线之间相对相移的变化。我们还提供了点状各向异性散射粒子的模拟图像,并将其与我们的实验结果进行了比较。该理论模型基于用于偏振光和高数值孔径透镜的部分相干成像的完整矢量理论。

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