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Mitigating the Effect of Atmospheric Turbulence on Orbital Angular Momentum-Based Quantum Key Distribution Using Real-Time Adaptive Optics with Phase Unwrapping.

Optics express(2021)

Univ Sci & Technol China | Chinese Acad Sci

Cited 8|Views7
Abstract
Quantum key distribution (QKD) employed orbital angular momentum (OAM) for high-dimensional encoding enhances the system security and information capacity between two communication parties. However, such advantagesare significantly degraded because of the fragility of OAM states in atmospheric turbulence. Unlike previous researches, we first investigate the performance degradation of OAM-based QKD by infinitely long phase screen (ILPS), which offers a feasible way to study how adaptive optics (AO) dynamically corrects the turbulence-induced aberrations in real time. Secondly, considering the failure of AO while encountering phase cuts, we evaluate the quality enhancement of OAM-based QKD under a moderate turbulence strength by AO after implementing the wrapped cuts elimination. Finally, we simulate that, with more realistic considerations; real-time AO can still mitigate the impact of atmospheric turbulence on OAM-based QKD even in the large wind velocity regime.
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要点】:本文首次研究了大气湍流对基于轨道角动量(OAM)量子密钥分发(QKD)系统性能的影响,并提出了实时自适应光学方法结合相位解缠技术来减轻这种影响,为提高OAM-QKD在大气环境中的鲁棒性提供了新的解决方案。

方法】:采用了实时自适应光学技术,结合相位解缠技术动态纠正大气湍流引起的畸变。

实验】:通过无限长相位屏(ILPS)模拟了大气湍流影响,并在中等强度湍流下,实验评估了实施相位解缠后的OAM-QKD系统性能提升,发现即使在高速风速下,实时自适应光学方法也能有效减轻大气湍流的影响。