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Coherent imaging of extended objects

机译:扩展物体的相干成像

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摘要

When used with coherent light, optical imaging systems are inherently unable to reproduce both the amplitude and the phase of a two-dimensional field distribution. This is because their impulse response function varies slowly from point to point, a property known as non-isoplanatism. For sufficiently small objects, this usually results in a phase distortion and has no impact on the measured intensity. Here, we show that the intensity distribution can be dramatically distorted when extended objects are imaged. We illustrate the problem using two simple examples: the pinhole camera and the thin lens. The effects predicted by our theoretical analysis are confirmed by experimental observations.
机译:当与相干光一起使用时,光学成像系统本身无法再现二维场分布的幅度和相位。这是因为它们的脉冲响应函数在点与点之间缓慢变化,这种特性称为非等平面性。对于足够小的物体,这通常会导致相位失真,并且对测量的强度没有影响。在这里,我们表明,当对扩展对象进行成像时,强度分布可能会显着失真。我们用两个简单的例子来说明这个问题:针孔相机和薄镜头。我们的理论分析所预测的效果得到了实验观察的证实。

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