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Spatially modulated thermal light in atomic medium for enhanced ghost imaging

机译:原子介质中的空间调制热光可增强重影成像

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摘要

Recent years have seen vast progress in image modulation based on atomic media, with potential applications in both classical optical imaging and quantum imaging regions. However, there have been few investigations of how thermal light images interact with an electromagnetically induced transparent medium. In this letter, we experimentally demonstrate pseudo-thermal light modulation on coherent population trapping conditions in 87 Rb vapor. By introducing the Laguerre-Gaussian beam as the control beam and the encoded speckle as the probe beam, we obtained sharper speckle patterns after the atom cell compared with that in free space. The spatially modulated thermal light was then used to enhance the image resolution in ghost imaging of which the resolution was enhanced by factor 3, since the ghost image resolution is heavily reliant on the speckle’s transverse coherent length. Our results are promising for potential applications in high resolution ghost imaging and image metrology, image processing and biomedical imaging.
机译:近年来,基于原子介质的图像调制取得了巨大的进步,在经典的光学成像和量子成像领域都有潜在的应用。然而,关于热光图像如何与电磁感应的透明介质相互作用的研究很少。在这封信中,我们通过实验证明了在 87 Rb蒸气中相干种群捕获条件下的伪热光调制。通过引入Laguerre-Gaussian光束作为控制光束并引入编码斑点作为探测光束,与自由空间相比,我们在原子单元之后获得了更清晰的斑点图案。然后,由于重影图像的分辨率很大程度上取决于斑点的横向相干长度,因此使用空间调制的热光来增强重影成像的图像分辨率,该分辨率的分辨率提高了3倍。我们的结果对于在高分辨率幻影成像和图像计量,图像处理和生物医学成像中的潜在应用很有希望。

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