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White light differential interference contrast microscope with a Sagnac interferometer

机译:带Sagnac干涉仪的白光微分干涉对比显微镜

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摘要

A new technique for producing a white light differential interference contrast (DIC) image using a lateral shearing, rotation phase shifting Sagnac interferometer (SI) is proposed. The SI, placed in the image space after the tube lens of a microscope system with spatially coherent white light Kohler illumination, splits the image forming beam into coherent components with small lateral shear. Phase shifts, between the interfering components, which can be considered as biased phase difference (BPD), are introduced by applying small angular rotation of the SI in its own plane. This variable BPD between the interfering white light components produces a uniform intensity colored background. The object related phase shift, due to the height difference between two close points on the object surface with separation on the order of least resolvable separation of the microscope objective, in addition to the BPD would produce a change in intensity/hue/color against a uniform background due to the BPD. Thus a DIC image is formed and the variable BPD provides an excellent means of improving the contrast of the image.
机译:提出了一种使用横向剪切旋转相移萨格纳克干涉仪(SI)产生白光差分干涉对比(DIC)图像的新技术。 SI被放置在具有空间相干白光科勒照明的显微镜系统的镜筒透镜之后的图像空间中,它将成像光束分成横向剪切力小的相干分量。干扰分量之间的相移可被视为偏置相差(BPD),是通过在SI自身平面中施加较小的角度旋转来引入的。干扰白光分量之间的此可变BPD会产生均匀强度的彩色背景。与物体有关的相移,由于物体表面上两个闭合点之间的高度差,且其间距约为显微镜物镜的最小可分辨间距,因此除了BPD以外,还会产生强度/色相/颜色相对于BPD的变化。由于BPD,背景一致。这样就形成了DIC图像,可变BPD提供了一种改善图像对比度的极好方法。

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