论文标题

具有高维空间模式编码的动荡通道中实时自适应光学补偿的性能

Performance of real-time adaptive optics compensation in a turbulent channel with high-dimensional spatial-mode encoding

论文作者

Zhao, Jiapeng, Zhou, Yiyu, Braverman, Boris, Liu, Cong, Pang, Kai, Steinhoff, Nicholas K., Tyler, Glenn A., Willner, Alan E., Boyd, Robert W.

论文摘要

光子的轨道角动量(OAM)是高维量子键分布(QKD)的有前途的自由度。但是,有效缓解大气湍流的不利影响是在自由空间通信渠道运行的OAM QKD系统中的持续挑战。与以前着重纠正静态模拟湍流的工作相反,我们研究了OAM QKD在实时自适应光学(AO)校正中的真实大气湍流中的性能。我们表明,即使我们的AO系统也提供有限的校正,也可以减轻弱湍流引起的错误并建立安全的通道。通过两种配置研究了由湍流引起的串扰和AO系统的性能:具有可控湍流的实验室尺度链接,以及带有动态大气湍流的340 m长横校区链路。我们的实验结果表明,具有精细光束跟踪的高级AO系统,可靠的光束稳定,精确的波前传感和准确的波前校正是为了充分纠正湍流引起的误差。我们还提出并展示了不同的解决方案,以通过湍流提高OAM QKD的性能,这可以使OAM在较强的湍流中进行编码。

The orbital angular momentum (OAM) of photons is a promising degree of freedom for high-dimensional quantum key distribution (QKD). However, effectively mitigating the adverse effects of atmospheric turbulence is a persistent challenge in OAM QKD systems operating over free-space communication channels. In contrast to previous works focusing on correcting static simulated turbulence, we investigate the performance of OAM QKD in real atmospheric turbulence with real-time adaptive optics (AO) correction. We show that, even our AO system provides a limited correction, it is possible to mitigate the errors induced by weak turbulence and establish a secure channel. The crosstalk induced by turbulence and the performance of AO systems is investigated in two configurations: a lab-scale link with controllable turbulence, and a 340 m long cross-campus link with dynamic atmospheric turbulence. Our experimental results suggest that an advanced AO system with fine beam tracking, reliable beam stabilization, precise wavefront sensing, and accurate wavefront correction is necessary to adequately correct turbulence-induced error. We also propose and demonstrate different solutions to improve the performance of OAM QKD with turbulence, which could enable the possibility of OAM encoding in strong turbulence.

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