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通过时间校正实现的高分辨率鬼成像穿过复杂散射介质。

High-resolution ghost imaging through complex scattering media via a temporal correction.

作者信息

Xiao Yin, Zhou Lina, Chen Wen

出版信息

Opt Lett. 2022 Aug 1;47(15):3692-3695. doi: 10.1364/OL.463897.

Abstract

In this Letter, we propose high-resolution ghost imaging (GI) through complex scattering media using temporal correction. We provide evidence that the theoretical description about GI based on spatially correlated beams is still incomplete and cannot work in complex scenarios. We complete the description of temporal correction of beam correlations in GI. The optical experiments demonstrate that high-resolution ghost images can always be retrieved by using the rectified temporally corrected beam correlation algorithm even in complex, dynamic, and highly strong scattering environments where conventional GI cannot work. By using the proposed method, the quality of the retrieved ghost images through complex scattering media can be enhanced effectively as the number of realizations increases, which cannot be achieved by conventional GI. The established general framework provides optical insights beyond the current understanding of GI, and the rectified theory and experimental results would represent a key step toward applications of GI over a wide range of free-space wave propagation environments.

摘要

在本信函中,我们提出了利用时间校正通过复杂散射介质进行高分辨率鬼成像(GI)的方法。我们证明,基于空间相关光束的鬼成像理论描述仍不完整,在复杂场景中无法适用。我们完善了鬼成像中光束相关性的时间校正描述。光学实验表明,即使在传统鬼成像无法工作的复杂、动态和强散射环境中,使用经校正的时间校正光束相关算法也总能获取高分辨率鬼成像。通过使用所提出的方法,随着实现次数的增加,通过复杂散射介质获取的鬼成像质量可有效提高,这是传统鬼成像无法实现的。所建立的通用框架提供了超出当前对鬼成像理解的光学见解,经校正的理论和实验结果将代表在广泛的自由空间波传播环境中应用鬼成像的关键一步。

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