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Spatial coherence of fields from generalized sources in the Fresnel regime

机译:菲涅耳制度中广义源的田间空间相干性

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Analytic expressions of the spatial coherence of partially coherent fields propagating in the Fresnel regime in all but the simplest of scenarios are largely lacking, and calculation of the Fresnel transform typically entails tedious numerical integration. Here, we provide a closed-form approximation formula for the case of a generalized source obtained by modulating the field produced by a Gauss-Shell source model with a piecewise constant transmission function, which may be used to model the field's interaction with objects and apertures. The formula characterizes the coherence function in terms of the coherence of the Gauss-Schell beam propagated in free space and a multiplicative term capturing the interaction with the transmission function. This approximation holds in the regime where the intensity width of the beam is much larger than the coherence width under mild assumptions on the modulating transmission function. The formula derived for generalized sources lays the foundation for the study of the inverse problem of scene reconstruction from coherence measurements. (C) 2017 Optical Society of America
机译:在菲涅耳制度中传播的部分相干区域的空间相干性的分析表达在很大程度上缺乏,并且菲涅耳变换的计算通常需要繁琐的数值积分。这里,我们提供了通过调制由通过分段恒定传输功能的高斯 - 壳体源模型产生的字段而获得的广义源的封闭形式近似公式,这可以用于将场与对象和孔的孔的交互模拟。该公式表征了在自由空间中传播的高斯 - Schell波束的相干关系的相干功能,以及捕获与传输功能的交互的乘法项。该近似值在调制传输功能上的温和假设下的光束的强度宽度远大于相干宽度的状态。导出用于广义来源的公式将场景重建逆问题的基础奠定了与相干测量的逆问题。 (c)2017年光学学会

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