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Spatial stationarity of statistical optical fields for coherence holography and photon correlation holography

机译:相干全息和光子相关全息的统计光学场的空间平稳性

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摘要

The spatial stationarity of scattered optical fields constitutes a basic premise of coherence holography and photon correlation holography. Nevertheless, spatial stationarity seems to have attracted less attention and still remains a less familiar concept than temporal stationarity because it has been a common practice in statistical optics to assume temporal ergodicity and replace the ensemble average with the time average, rather than the space average. To form the theoretical basis for coherence holography and photon correlation holography, an investigation is made into the spatial stationarity of the statistical optical field, and combinations of a light source and an optical system are identified that can create spatially stationary scattered fields. The result justifies the principles of coherence holography and photon correlation holography, and the previously reported experiments.
机译:散射光场的空间平稳性构成了相干全息和光子相关全息的基本前提。然而,空间平稳性似乎比时间平稳性引起了较少的关注,并且仍然比时间平稳性更不为人所知,因为统计光学中一种常见的做法是假定时间遍历性,并用时间平均值而不是空间平均值代替整体平均值。为了形成相干全息和光子相关全息的理论基础,对统计光学场的空间平稳性进行了研究,并确定了可以创建空间固定散射场的光源和光学系统的组合。该结果证明了相干全息和光子相关全息的原理以及先前报道的实验。

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  • 来源
    《Optics Letters》 |2013年第17期|共4页
  • 作者

    Mitsuo Takeda;

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  • 正文语种 eng
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