论文标题

使用光子积分电路从捕获的离子中路由单个光子

Routing Single Photons from a Trapped Ion Using a Photonic Integrated Circuit

论文作者

Saha, Uday, Siverns, James D., Hannegan, John, Prabhu, Mihika, Quraishi, Qudsia, Englund, Dirk, Waks, Edo

论文摘要

由于长期寿命的量子相干时间和高保真的单个和两分门,由于捕获的离子是可伸缩量子网络节点的有希望的候选者。基于捕获离子的未来量子网络将需要一种可扩展的方式来在不同节点之间路由光子。制造铸造厂的光子整合电路为此问题提供了紧凑的解决方案。但是,这些电路通常在电信波长下运行,这些波长与被困离子的强偶极子排放不相容。在这项工作中,我们使用光子积分电路演示了从捕获离子中的单光子路由。我们采用量子频率转换来匹配离子的发射到铸造型氮化硅光子集成电路的工作波长,通过该设备实现了总计31 $ \ pm $ 0.9%的总传输。使用可编程相位变速器,我们在电路的输出通道之间切换单个光子,并证明了50/50的光束拆分条件。这些结果构成了大规模量子网络和分布式量子计算机中可编程路由和纠缠分布的重要一步。

Trapped ions are promising candidates for nodes of a scalable quantum network due to their long-lived qubit coherence times and high-fidelity single and two-qubit gates. Future quantum networks based on trapped ions will require a scalable way to route photons between different nodes. Photonic integrated circuits from fabrication foundries provide a compact solution to this problem. However, these circuits typically operate at telecommunication wavelengths which are incompatible with the strong dipole emissions of trapped ions. In this work, we demonstrate the routing of single photons from a trapped ion using a photonic integrated circuit. We employ quantum frequency conversion to match the emission of the ion to the operating wavelength of a foundry-fabricated silicon nitride photonic integrated circuit, achieving a total transmission of 31$\pm$0.9% through the device. Using programmable phase shifters, we switch the single photons between the output channels of the circuit and also demonstrate a 50/50 beam splitting condition. These results constitute an important step towards programmable routing and entanglement distribution in large-scale quantum networks and distributed quantum computers.

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