论文标题

三维介质内的光的空间连贯性

Spatial coherence of light inside three dimensional media

论文作者

Leonetti, Marco, Pattelli, Lorenzo, De Panfilis, Simone, Wiersma, Diederik S., Ruocco, Giancarlo

论文摘要

Speckle可能是无序培养基中光的最根本干扰效应,引起了令人着迷的身体现象,并在成像,光谱或密码学中实现了应用。尽管在样本外部形成的斑点很容易测量和分析,但由于明显的物理访问问题,很难在随机介质中形成的真正散装斑点很难直接调查。此外,其适当的理论描述带来了巨大的挑战。在这里,我们使用嵌入式的DNA琴弦在无序介质内部的强度相关性的第一个直接测量值,该嵌入式DNA弦被用发射器装饰而成,这些DNA字符串由受控的纳米距离隔开。我们的方法提供了原位访问大量斑点的基本特性,作为它们的大小和极化程度,两者都发现它们与理论预测显着偏离。通过与严格的数值计算相比,用纳米级的极化成分和非宇宙近场贡献之间的相关性来解释偏差。

Speckle is maybe the most fundamental interference effect of light in disordered media, giving rise to fascinating physical phenomena and enabling applications in imaging, spectroscopy or cryptography, to name a few. While speckle formed outside a sample is easily measured and analysed, true bulk speckle, as formed inside random media, is difficult to investigate directly due to the obvious issue of physical access. Furthermore, its proper theoretical description poses enormous challenges. Here we report on the first direct measurements of intensity correlations of light inside a disordered medium, using embedded DNA strings decorated with emitters separated by a controlled nanometric distance. Our method provides in situ access to fundamental properties of bulk speckles as their size and polarization degrees of freedom, both of which are found to deviate significantly from theoretical predictions. The deviations are explained, by comparison with rigorous numerical calculations, in terms of correlations among polarization components and non-universal near-field contributions at the nanoscale.

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