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Harmonic holography: a new holographic principle

机译:谐波全息:一种新的全息原理

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摘要

The process of second harmonic generation (SHG) has a unique property of forming a sharp optical contrast between noncentrosymmetric crystalline materials and other types of material, which is a highly valuable asset for contrast microscopy. The coherent signal obtained through SHG also allows for the recording of holograms at high spatial and temporal resolution, enabling whole-field four-dimensional microscopy for highly dynamic microsystems and nanosystems. Here we describe a new holographic principle, harmonic holography (H~(2)), which records holograms between independently generated second harmonic signals and reference. We experimentally demonstrate this technique with digital holographic recording of second harmonic signals upconverted from an ensemble of second harmonic generating nanocrystal clusters under femtosecond laser excitation. Our results show that harmonic holography is uniquely suited for ultrafast four-dimensional contrast microscopy.
机译:二次谐波产生(SHG)的过程具有独特的特性,可以在非中心对称晶体材料和其他类型的材料之间形成鲜明的光学对比度,这对于对比度显微镜来说是非常有价值的资产。通过SHG获得的相干信号还允许以高空间和时间分辨率记录全息图,从而可以对高度动态的微系统和纳米系统进行全场四维显微镜检查。在这里,我们描述了一种新的全息原理,即谐波全息(H〜(2)),它记录了独立生成的二次谐波信号与参考之间的全息图。我们用飞秒激光激发从二次谐波产生纳米晶体簇的集合上转换的二次谐波信号的数字全息记录实验性地证明了该技术。我们的结果表明,谐波全息术非常适合于超快速四维反差显微镜。

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