Effects of lens aperture on the average intensity in a fractional Fourier plane

H. Yoshimura, T. Iwai
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引用次数: 4

Abstract

Effects of the aperture of a lens which is used to conduct an optical fractional Fourier transform on the fractional average intensity are analysed numerically using a computer. The fractional average intensity means the average intensity of the optical field produced from a partially coherent source in a fractional Fourier plane. In the present study, the fractional average intensities of a monochromatic Gaussian Schell model (GSM) source are evaluated using the root-mean square (RMS) difference between those with and without the effects of the lens aperture. It is clearly shown from our analysis that the aperture size of the lens should be twice as large as the GSM source size or greater in order to satisfy the condition of the RMS difference .
透镜孔径对分数傅里叶平面平均光强的影响
用计算机数值分析了用于光学分数阶傅里叶变换的透镜孔径对分数阶平均光强的影响。分数阶平均强度是指部分相干光源在分数阶傅里叶平面上产生的光场的平均强度。在本研究中,利用单色高斯谢尔模型(GSM)光源的均方根(RMS)差来评估有和没有透镜孔径影响的分数平均强度。我们的分析清楚地表明,为了满足均方根差的条件,透镜的孔径尺寸应该是GSM源尺寸的两倍或更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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