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Free-space propagation of high-dimensional structured optical fields in an urban environment

机译:城市环境中高维结构化光场的自由空间传播

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摘要

Spatially structured optical fields have been used to enhance the functionality of a wide variety of systems that use light for sensing or information transfer. As higher-dimensional modes become a solution of choice in optical systems, it is important to develop channel models that suitably predict the effect of atmospheric turbulence on these modes. We investigate the propagation of a set of orthogonal spatial modes across a free-space channel between two buildings separated by 1.6 km. Given the circular geometry of a common optical lens, the orthogonal mode set we choose to implement is that described by the Laguerre-Gaussian (LG) field equations. Our study focuses on the preservation of phase purity, which is vital for spatial multiplexing and any system requiring full quantum-state tomography. We present experimental data for the modal degradation in a real urban environment and draw a comparison to recognized theoretical predictions of the link. Our findings indicate that adaptations to channel models are required to simulate the effects of atmospheric turbulence placed on high-dimensional structured modes that propagate over a long distance. Our study indicates that with mitigation of vortex splitting, potentially through precorrection techniques, one could overcome the challenges in a real point-to-point free-space channel in an urban environment.
机译:空间结构化的光学场已被用于增强使用光进行传感或信息传递的各种系统的功能。随着高维模成为光学系统中的一种选择解决方案,开发通道模型以适当预测大气湍流对这些模的影响非常重要。我们调查了由1.6 km隔开的两座建筑物之间的自由空间通道上的一组正交空间模式的传播。给定一个普通光学透镜的圆形几何形状,我们选择实现的正交模式集由拉盖尔-高斯(LG)场方程描述。我们的研究重点在于保持相纯度,这对于空间复用以及任何需要完整量子态层析成像的系统至关重要。我们提供了实际城市环境中模态退化的实验数据,并与公认的链接理论预测进行了比较。我们的发现表明,需要对通道模型进行调整,以模拟放置在长距离传播的高维结构化模式上的大气湍流的影响。我们的研究表明,通过潜在地通过预校正技术减轻涡流分裂,可以克服城市环境中真正的点对点自由空间通道中的挑战。

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