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光学相干晶格在湍流大气中的传播。

Propagation of optical coherence lattices in the turbulent atmosphere.

作者信息

Liu Xianlong, Yu Jiayi, Cai Yangjian, Ponomarenko Sergey A

出版信息

Opt Lett. 2016 Sep 15;41(18):4182-5. doi: 10.1364/OL.41.004182.

Abstract

We explore the propagation of recently introduced optical coherence lattices (OCLs) in the turbulent atmosphere. We show that the lattice intensity profile and the spatial degree of coherence will display periodicity reciprocity over long propagation distances even though the lattices are affected by the turbulence. The lattice periodicity reciprocity has been previously conjectured to be advantageous for free-space information transfer and optical communications. We then show how one can increase the distance over which the lattice periodicity reciprocity is preserved in the turbulent atmosphere by engineering input lattice beam parameters. We also show that the OCLs have scintillation indices lower than those of Gaussian beams.

摘要

我们研究了最近引入的光学相干晶格(OCLs)在湍流大气中的传播。我们表明,即使晶格受到湍流影响,在长传播距离上,晶格强度分布和空间相干度仍将呈现周期性互易性。晶格周期性互易性此前已被推测有利于自由空间信息传输和光通信。然后我们展示了如何通过设计输入晶格光束参数来增加在湍流大气中保持晶格周期性互易性的距离。我们还表明,OCLs的闪烁指数低于高斯光束的闪烁指数。

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