首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Stochastic complex transmittance screens for synthesizing general partially coherent sources
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Stochastic complex transmittance screens for synthesizing general partially coherent sources

机译:随机复合透射截面,用于合成一般部分相干来源

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摘要

We develop a method to synthesize any partially coherent source (PCS) with a genuine cross-spectral density (CSD) function using complex transmittance screens. Prior work concerning PCS synthesis with complex transmittance screens has focused on generating Schell-model (uniformly correlated) sources. Here, using the necessary and sufficient condition for a genuine CSD function, we derive an expression, in the form of a superposition integral, that produces stochastic complex screen realizations. The sample autocorrelation of the screens is equal to the complex correlation function of the desired PCS. We validate our work by generating, in simulation, three PCSs from the literature-none has ever been synthesized using stochastic screens before. Examining planar slices through the four-dimensional CSD functions, we find the simulated results to be in excellent agreement with theory, implying successful realization of all three PCSs. The technique presented herein adds to the existing literature concerning the generation of PCSs and can be physically implemented using a simple optical setup consisting of a laser, spatial light modulator, and spatial filter.
机译:我们开发一种方法来合成具有使用复杂透射屏幕的真正交叉谱密度(CSD)函数的任何部分相干源(PC)。关于具有复杂透射率屏幕的PC合成的先前工作集中在生成Schell模型(均匀相关的)源上。这里,使用真正的CSD函数的必要和充分条件,我们从叠加积分的形式推导出一种表达式,它产生随机复杂屏幕的实现。屏幕的样本自相关等于所需PC的复杂相关函数等于复杂的相关函数。我们通过在仿真中验证我们的工作,在仿真中,从文献中的三个PC-of曾经使用过以前的屏幕合成。通过四维CSD函数检查平面切片,我们发现模拟结果与理论非常吻合,暗示了所有三个PC的成功实现。这里呈现的技术增加了关于PCS的产生的现有文献,并且可以使用由激光,空间光调制器和空间滤波器组成的简单光学设置物理地实现。

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