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Partial coherence formulation of grating self-imaging with any illumination

机译:任意光照条件下光栅自成像的部分相干公式

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摘要

On the basis of the partial coherence theory, a uniform formulation for the self-imaging is established, which can be used for both continuous and temporal illuminations with any kind of spectra. The formulation includes the cross mutual spectral density, the time diffractive intensity distribution and the averaged diffractive intensity distribution of grating at the self-imaging distances, and the last two variables are deduced in terms of the cross mutual spectral density. The self-imaging effect of different illuminations is then studied with a numerical stimulation, such as the continuous illumination with a polychromatic light source, and the ultra-short laser pulses with or without frequency chirp. It is interesting to find that the ultra-short pulse laser illumination and the polychromatic continuous illumination have the similar average intensity distribution of self-imaging, so that the self-imaging effect may be helpful for the study of the temporal and spectral characteristics of ultra-short laser pulses. An experiment with a polychromatic continuous light illumination (LED) is given, the results are the same as the predicted.
机译:基于部分相干理论,建立了自成像的统一公式,可用于具有任何种类光谱的连续和时间照明。该公式包括交叉互谱密度,光栅在自成像距离处的时间衍射强度分布和平均衍射强度分布,并根据交叉互谱密度推导了最后两个变量。然后,通过数值刺激来研究不同照明的自成像效果,例如使用多色光源的连续照明以及具有或不具有频率线性调频的超短激光脉冲。有趣的是,超短脉冲激光照明和多色连续照明具有相似的自成像平均强度分布,因此自成像效应可能有助于研究超光谱的时间和光谱特性。 -短的激光脉冲。给出了使用多色连续光照明(LED)的实验,结果与预测的相同。

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