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首页> 外文期刊>International Journal of Communications, Network and System Sciences >Testing of the Entangled QKD System EPR S405 Quelle (AIT) in Commercial 1550 nm Fiber Network
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Testing of the Entangled QKD System EPR S405 Quelle (AIT) in Commercial 1550 nm Fiber Network

机译:商用1550 nm光纤网络中纠缠QKD系统EPR S405 Quelle(AIT)的测试

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In this communication, we report results of running tests on standard telecommunication metropolitan network 1550 nm fiber applied to a quantum channel to EPR S405 Quelle prototype systems installed in National Laboratory for Quantum Technologies WUT and in CompSecur Wroclaw. Testing was carried out by means of the original design by us and applied special data card collecting parameters of functioning system allowing for assessment of quality of quantum channel. We have performed several trials using various configurations of standard 1550 nm fiber patch-cord up to length of 6.5 km with additional usage of various patch-cords with weldings and connectors which typically present in already installed commercial metropolitan communication networks. The implementation of this testing indicated that the rigorous maintenance of photon polarization is required for quantum information exchange upon EPR S405 Quelle functioning. The polarization of optical signal turned out to be, however, very unstable for the tested connection which resulted in very rapid QBER rise precluding practical usefulness of this connection for secure quantum exchange of cryptographic key over practically significant distances. We have identified that the main obstacle was the polarization decoherence caused by weldings and connectors in standard patch-cords and accidental strains in fibers as well as generally poor transmitting properties of 1550 nm fiber for much shorter wave-length photons used by the Quelle system. To maintain the quantum channel active, very frequent manual corrections of polarization control were required. So we expect that by design and application of an automatic polarization control module, one would stabilize visibility ratio and lower QBER to an acceptable level conditioning possible future implementation of entangled QKD system in commercial networks.
机译:在本次交流中,我们报告了在量子信道上使用的标准电信城域网1550 nm光纤上运行测试的结果,该光纤安装在国家量子技术实验室和CompSecur Wroclaw中的EPR S405 Quelle原型系统上。测试是由我们根据原始设计进行的,并应用了功能系统的特殊数据卡收集功能参数,从而可以评估量子通道的质量。我们使用标准配置的1550 nm光纤跳线(长达6.5 km)进行了多次试验,并额外使用了各种带有焊接和连接器的跳线,这些电缆和连接器通常用于已安装的商用城市通信网络中。该测试的实施表明,在EPR S405 Quelle功能下,量子信息交换需要严格保持光子极化。然而,对于所测试的连接而言,光信号的极化非常不稳定,这导致QBER迅速上升,从而排除了该连接在实用距离上进行安全密钥量子交换的实用性。我们已经发现,主要障碍是由标准贴片电缆中的焊接和连接器以及光纤中的偶然应变引起的极化退相干,以及对于Quelle系统使用的波长较短的光子而言,1550 nm光纤的传输性能普遍较差。为了保持量子通道的活动性,需要非常频繁的手动偏振控制校正。因此,我们希望通过设计和应用一种自动偏振控制模块,可以将可见度比稳定下来,并将QBER降低到可接受的水平,从而可以在商业网络中实现纠缠QKD系统的未来实现。

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