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Chip-based quantum key distribution

机译:基于芯片的量子密钥分配

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摘要

Improvement in secure transmission of information is an urgent need for governments, corporations and individuals. Quantum key distribution (QKD) promises security based on the laws of physics and has rapidly grown from proof-of-concept to robust demonstrations and deployment of commercial systems. Despite these advances, QKD has not been widely adopted, and large-scale deployment will likely require chip-based devices for improved performance, miniaturization and enhanced functionality. Here we report low error rate, GHz clocked QKD operation of an indium phosphide transmitter chip and a silicon oxynitride receiver chip—monolithically integrated devices using components and manufacturing processes from the telecommunications industry. We use the reconfigurability of these devices to demonstrate three prominent QKD protocols—BB84, Coherent One Way and Differential Phase Shift—with performance comparable to state-of-the-art. These devices, when combined with integrated single photon detectors, pave the way for successfully integrating QKD into future telecommunications networks.
机译:信息安全传输的改进是政府,公司和个人的迫切需求。量子密钥分发(QKD)保证基于物理定律的安全性,并已从概念验证迅速发展为强大的演示和商业系统部署。尽管取得了这些进步,但是QKD尚未得到广泛采用,并且大规模部署可能需要基于芯片的设备来改善性能,小型化和增强功能。在这里,我们报告了磷化铟发射器芯片和氧氮化硅接收器芯片(使用电信行业中的组件和制造工艺的单片集成设备)的低错误率,GHz时钟QKD操作。我们使用这些设备的可重新配置性来演示三种出色的QKD协议-BB84,相干单向和差分相移-其性能可与最新技术相媲美。这些设备与集成的单光子探测器结合使用时,为将QKD成功集成到未来的电信网络中铺平了道路。

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