Abstract
We present a Monte Carlo method for propagating partially coherent fields through complex deterministic optical systems. A Gaussian copula is used to synthesize a random source with an arbitrary spatial coherence function. Physical optics and Monte Carlo predictions of the first- and second-order statistics of the field are shown for coherent and partially coherent sources for free-space propagation, imaging using a binary Fresnel zone plate, and propagation through a limiting aperture. Excellent agreement between the physical optics and Monte Carlo predictions is demonstrated in all cases. Convergence criteria are presented for judging the quality of the Monte Carlo predictions.
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CITATION STYLE
Fischer, D. G., Prahl, S. A., & Duncan, D. D. (2008). Monte Carlo modeling of spatial coherence: free-space diffraction. Journal of the Optical Society of America A, 25(10), 2571. https://doi.org/10.1364/josaa.25.002571
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