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首页> 外文期刊>Physical Review X >High-Speed Measurement-Device-Independent Quantum Key Distribution with Integrated Silicon Photonics
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High-Speed Measurement-Device-Independent Quantum Key Distribution with Integrated Silicon Photonics

机译:具有集成硅光子的高速测量 - 设备无关的量子密钥分布

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Measurement-device-independent quantum key distribution (MDI QKD) removes all detector side channels and enables secure QKD with an untrusted relay. It is suitable for building a star-type quantum access network, where the complicated and expensive measurement devices are placed in the central untrusted relay and each user requires only a low-cost transmitter, such as an integrated photonic chip. Here, we experimentally demonstrate a 1.25-GHz silicon photonic chip-based MDI QKD system using polarization encoding. The photonic chip transmitters integrate the necessary encoding components for a standard QKD source. We implement random modulations of polarization states and decoy intensities, and demonstrate a finite-key secret rate of 31 bit=s over 36-dB channel loss (or 180-km standard fiber). This key rate is higher than state-of-the-art MDI QKD experiments. The results show that silicon photonic chipbased MDI QKD, benefiting from miniaturization, low-cost manufacture, and compatibility with CMOS microelectronics, is a promising solution for future quantum secure networks.
机译:无关的测量 - 无关的量子密钥分布(MDI QKD)消除所有探测器侧通道,并通过不受信任的继电器启用安全QKD。它适用于构建星形型量子接入网络,其中复杂和昂贵的测量装置放置在中央不受信任的继电器中,并且每个用户只需要低成本的发射器,例如集成的光子芯片。在这里,我们通过偏振编码实验地示出了基于1.25-GHz硅光子芯片的MDI QKD系统。光子芯片发射器集成了标准QKD源的必要编码组件。我们实现了偏振状态和诱饵强度的随机调制,并证明了31位频率超过36dB通道损耗(或180公里标准光纤)的有限关键秘密速率。此键率高于最先进的MDI QKD实验。结果表明,硅光子芯片基于MDI QKD,受益于小型化,低成本制造和与CMOS微电子的兼容性,是未来量子安全网络的有希望的解决方案。

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