Phys. Rev. A 86 063817), turbulence insensitivity of sunlight ghost imaging is demonstrated both theoretically and experimentally in this article. It is found that thermal ghost imaging system whose coherence time need not to be controlled to match the speed of the detectors, ghost imaging with sunlight, which has always been considered intriguing and highly desirable, now is realizable. We present theoretical and experimental results showing that a sunlight self-correlation ghost imaging system can produce high-quality images even when it uses an slow detector and passes through the turbulence near ground, as long as the signal variation is predominantly caused by the fluctuation of the sunlight intensity rather than other noise sources. Our scheme can also be used to improve the image quality in other wave bands such as infrared and ultraviolet, in the case where an poor image quality results from the turbulence or other random disturbances on the wavefront."> - 必威体育下载

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    Li Ming-Fei, Yan Lu, Yang Ran, Kou Jun, Liu Yuan-Xing
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    • Abstract views:7533
    • PDF Downloads:86
    • Cited By:0
    Publishing process
    • Received Date:11 December 2018
    • Accepted Date:10 March 2019
    • Available Online:01 May 2019
    • Published Online:05 May 2019

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