论文标题

扩散介质中空间频率调制的角度依赖性

Angular dependency of spatial frequency modulation in diffusion media

论文作者

Chen, Yun, Wang, Chengyuan, Jiang, Zibin, Zhang, Wei, Shen, Zehao, Gao, Hong, Li, Fuli

论文摘要

当光场将其映射到热运动原子(例如缓慢或存储光过程)中时,将经历连贯的扩散。如前所述,这种扩散效果等同于空间低通滤波器衰减光场的高空间频率(SF)组件。在这里,采用电磁诱导的透明度(EIT)在热原子蒸气中的光存储,我们证明了对照和探针梁之间的角度偏差可以用作调节探针束SF的自由度。原理是将扩散诱导的低通滤波器更改为带通滤波器,该滤波器可以通过改变角度偏差的方向和大小来调整SF响应。横向多模光场(例如光学图像和拉瓜仪模式)用于研究这种SF调制。我们的发现可以广泛地应用于量子信息处理,全光图像操纵和通过扩散介质进行成像的领域。

An optical field will undergo coherent diffusion when it is mapped into thermal-motioned atoms, e.g., in a slow or storage light process. As was demonstrated before, such diffusion effect is equivalent to a spatial low-pass filter attenuating the high spatial frequency (SF) components of the optical field. Here, employing electromagnetically induced transparency (EIT) based light storage in hot atomic vapor, we demonstrate that the angular deviation between the control and probe beams could be utilized as a degree of freedom to modulate the SF of the probe beam. The principle is to change the diffusion-induced low-pass filter into a band-pass filter, whose SF response can be tuned by varying the direction and magnitude of the angular deviation. Transverse multimode light fields, such as optical images and Laguerre-Gaussian modes are utilized to study such SF modulation. Our findings could be broadly applied to the fields of quantum information processing, all-optical image manipulation and imaging through diffusive media.

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