论文标题

大气湍流中的矢量模式衰减:量子启发的分析

Vector mode decay in atmospheric turbulence: a quantum inspired analysis

论文作者

Nape, Isaac, Mashaba, Nikiwe, Mphuthi, Nokwazi, Jayakumar, Sruthy, Bhattacharya, Shanti, Forbes, Andrew

论文摘要

向量梁是不均匀的光场,其极化和空间成分之间具有不可分割的量子样相关性,并且对跨各种通道的经典和量子通信(例如。大气,水下和光纤。在这里,我们表明,通过利用其量子样特征来利用该田地的不可分割性,可以在串联中研究极化和空间成分的衰减。特别是,我们调用了通道状态二元性的原理,以表明任何矢量模式的不可分割性程度纯粹取决于最大不可分割的媒介,我们确认使用轨道角动量(OAM)作为在湍流气氛中使用轨道角动量(OAM)作为L = 1和L = 10的示例。结果是,众所周知的圆柱矢量涡流梁足以通过通道预测所有向量OAM状态的行为,并发现矢量质量衰减的速率随着OAM值的增加而降低,即使OAM中的扩散相反,随着OAM的增加而增加。我们的方法提供了嘈杂的通道的快速简便探测,同时揭示了应用于古典光的量子工具的力量。

Vector beams are inhomogeneously polarized optical fields with nonseparable, quantum-like correlations between their polarisation and spatial components, and hold tremendous promise for classical and quantum communication across various channels, e.g. the atmosphere, underwater, and in optical fibre. Here we show that by exploiting their quantum-like features by virtue of the nonseparability of the field, the decay of both the polarisation and spatial components can be studied in tandem. In particular, we invoke the principle of channel state duality to show that the degree of nonseparability of any vector mode is purely determined by that of a maximally nonseparable one, which we confirm using orbital angular momentum (OAM) as an example for topological charges of l = 1 and l = 10 in a turbulent atmosphere. A consequence is that the well-known cylindrical vector vortex beams are sufficient to predict the behaviour of all vector OAM states through the channel, and find that the rate of decay in vector quality decreases with increasing OAM value, even though the spread in OAM is opposite, increasing with OAM. Our approach offers a fast and easy probe of noisy channels, while at the same time revealing the power of quantum tools applied to classical light.

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