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核心布局和串扰对异构多芯光纤中量子密钥分发与经典通信共存的影响分析

Impact analysis of core layout and crosstalk on the coexistence of quantum key distribution and classical communications in heterogeneous multicore fiber.

作者信息

Xie Yuheng, Kong Weiwen, Li Zhenhua, Zhao Qi, Dou Tianqi, Pei Li, Tang Jianjun

出版信息

Opt Express. 2024 Sep 9;32(19):32768-32781. doi: 10.1364/OE.537120.

DOI:10.1364/OE.537120
PMID:39572995
Abstract

Heterogeneous multicore fibers (Hetero-MCFs) offer relatively lower inter-core crosstalk (XT) and improved bend resistance, making them feasible for the coexistence of quantum key distribution (QKD) and classical communications. However, detailed analyses of their impact on QKD performance remain limited. This study comprehensively investigates the significant effects of core layouts and XT on QKD performance in Hetero-MCFs under varying QKD service demands in theory. When allocating classical and quantum cores based on the maximum XT levels, hexagonal Hetero-MCFs perform the worst under low QKD service demand (LD), but comparably and superior to circular layouts under high QKD service demand (HD). The challenge of determining optimal parameters for the central core in hexagonal Hetero-MCFs critically influences overall QKD performance in both HD and LD scenarios. To address this, we propose a novel trench-assisted Hetero-MCF structure featuring an interleaved hexagonal core layout. This structure achieves at least 29-fold improvement in transmission distance for LD and 32-fold for HD scenarios compared to the benchmark, by utilizing two types of heterogeneous cores and providing greater flexibility. Our results also show that deploying homogeneous cores as quantum channels in Hetero-MCFs enhances QKD performance. Even with strict fabrication tolerances, the proposed structure maintains stable QKD performance with a maximum fluctuation of only 12%. These innovations provide valuable insights for analyzing the performance of Hetero-MCFs under varying QKD demands and further developing their co-fiber transmission applications.

摘要

异质多芯光纤(Hetero-MCFs)具有相对较低的芯间串扰(XT)和更好的抗弯曲性能,使其适用于量子密钥分发(QKD)和经典通信的共存。然而,关于它们对QKD性能影响的详细分析仍然有限。本研究从理论上全面调查了在不同QKD服务需求下,芯布局和XT对Hetero-MCFs中QKD性能的显著影响。当根据最大XT水平分配经典和量子芯时,六角形Hetero-MCFs在低QKD服务需求(LD)下表现最差,但在高QKD服务需求(HD)下与圆形布局相当且更优。确定六角形Hetero-MCFs中中心芯最佳参数的挑战对HD和LD场景下的整体QKD性能都有至关重要的影响。为解决这一问题,我们提出了一种新型的沟槽辅助Hetero-MCF结构,其具有交错的六角形芯布局。通过利用两种类型的异质芯并提供更大的灵活性,与基准相比,该结构在LD场景下传输距离提高了至少29倍,在HD场景下提高了32倍。我们的结果还表明,在Hetero-MCFs中将同质芯部署为量子通道可提高QKD性能。即使在严格的制造公差下,所提出的结构仍能保持稳定的QKD性能,最大波动仅为12%。这些创新为分析不同QKD需求下Hetero-MCFs的性能以及进一步开发其共纤传输应用提供了有价值的见解。

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