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Ghost interference with pseudo-thermal light

机译:幽灵干扰伪热灯

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Ghost imaging (correlated imaging) has been extensively investigated in recent years, both theoretically and experimentally. By using the second-order or high-order coherence properties of light field and the correlation measurement, ghost imaging was realized with quantum entangled light, pseudo-thermal light and even true thermal light. In this work, basing on the theory of statistical optics, we model the dynamic process of thermal variation, and obtain the ghost interference and ghost imaging by means of simulated calculation. In the later experiment, a pseudo-thermal source is firstly prepared by using a laser beam to pass through a rotating ground glass plate, and the parameters of the pseudo-thermal source are obtained via Hanbury-Brown-Twiss (HBT) experiment. With the pseudo-thermal light, we perform ghost interference. The experimental results demonstrate the accordance of numerical prediction. And our conclusion shows that the quality of ghost interference is influenced by the size of the pinhole in the reference path, the little pinhole due to a higher quality of ghost interference.
机译:近年来,雷鬼成像(相关成像)在理论上和实验上已经广泛调查。通过使用光场的二阶或高阶相干性能和相关测量,用量子缠结的光,伪热光甚至真正的热光实现鬼映像。在这项工作中,基于统计光学理论,我们模拟了热变化的动态过程,并通过模拟计算获得了重影干扰和鬼映像。在稍后的实验中,首先通过使用激光束通过旋转地玻璃板来制备伪热源,并且通过Hanbury-Brown-Twiss(HBT)实验获得伪热源的参数。通过伪热灯,我们执行鬼魂干扰。实验结果表明了数值预测。我们的结论表明,幽灵干扰的质量受到参考路径中针孔大小的影响,由于幽灵干扰的更高质量,小针孔。

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