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COHERENCE PROPERTIES OF A SOURCE ARRAY DERIVED FROM A GAUSSIAN SCHELL-MODEL BEAM

机译:高斯谢尔模型梁的源阵列的相干特性

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The spatial coherence properties of a source array derived from a quasi-monochromatic Gaussian Schell-model (GSM) beam are analyzed. The method for realizing the source array by use of a GSM source and a Gaussian amplitude grating was originally proposed in our preceding paper [J. Opt. Sec. Am. A 11, 2112 (1994)], in which the intensity distribution was analyzed. One result that we obtain is that the degree of spatial coherence of each element in the source array is the same as that at the other elements. In particular, each element becomes equivalent to the GSM source and has a high degree of spatial coherence with the other elements if three conditions are satisfied simultaneously: (1) the spatial-coherence length of the GSM source is larger than the GSM source size, (2) the GSM source size normalized by a period of the grating is 0.3 to 0.5, and (3) each aperture size of the grating normalized by the period is 0.05 or less. (C) 1995 Optical Society of America [References: 8]
机译:分析了源于准单色高斯谢尔模型(GSM)光束的源阵列的空间相干特性。我们先前的论文中最初提出了一种利用GSM源和高斯振幅光栅实现源阵列的方法[J.选择。秒上午。 11,11,112(1994)],其中分析了强度分布。我们获得的一个结果是,源数组中每个元素的空间相干程度与其他元素相同。特别是,如果同时满足三个条件,则每个元素都将与GSM源等效,并且与其他元素具有高度的空间相干性:(1)GSM源的空间相干长度大于GSM源的大小, (2)通过光栅的周期归一化的GSM源尺寸为0.3至0.5,以及(3)通过该周期归一化的光栅的每个孔径尺寸为0.05或更小。 (C)1995年美国眼镜学会[参考文献:8]

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