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Wavelength assignment in quantum access networks with hybrid wireless-fiber links

机译:具有混合无线光纤链路的量子接入网络中的波长分配

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We propose a low-complexity near-optimal wavelength allocation technique for quantum key distribution access networks that rely on wavelength division multiple access. Such networks would allow users to send quantum and classical signals simultaneously on the same optical fiber infrastructure. Users can be connected to the access network via optical wireless or wired links. We account for the background noise present in the environment, as well as the Raman noise generated by classical channels, and calculate the secret key generation rate for quantum channels in the finite-key setting. This allows us to examine the feasibility of such systems in realistic scenarios when the secret key exchange needs to be achieved in a limited time scale. Our numerical results show that, by proper choice of system parameters for this noisy system, it is possible to exchange a secret key in tens of seconds. Moreover, our proposed algorithm can enhance the key rate of quantum channels, especially in high-noise and/or high-loss regimes of operation. Published by The Optical Society under the terms of the Creative Commons Attribution 4.0 License.
机译:我们提出了依赖于波分多次访问的量子密钥分发接入网络的近似最佳波长分配技术的低复杂性。这种网络将允许用户在相同的光纤基础设施上同时发送量子和经典信号。用户可以通过光纤或有线链路连接到接入网络。我们考虑了环境中存在的背景噪声,以及经典信道产生的拉曼噪声,并计算有限键设置中量子信道的秘密密钥生成率。这允许我们在需要在有限的时间尺度上实现秘密关键交换时,从实际情况中检查这种系统的可行性。 Our numerical results show that, by proper choice of system parameters for this noisy system, it is possible to exchange a secret key in tens of seconds.此外,我们所提出的算法可以提高量子通道的关键率,尤其是在高噪声和/或高损失的操作方案中。光学社会根据创意公约归因于4.0许可的条款发布。

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