论文标题

量子网络电信波长的多功能片储存

Multifunctional on-chip storage at telecommunication wavelength for quantum networks

论文作者

Craiciu, Ioana, Lei, Mi, Rochman, Jake, Bartholomew, John G., Faraon, Andrei

论文摘要

量子网络将启用各种应用程序,从安全的通信和精确测量到分布式量子计算。存储光子Qubits并控制其频率,带宽和检索时间是未来光学量子网络的重要功能。在这里,我们使用Yttrium Orthosilicate中的Erbium离子集合耦合到硅光子谐振器并通过片上电极控制。通过动态原子频率梳协议来存储电信C波段中的光线,该协议由离子集合的过渡频率的线性DC Stark Shift控制。我们以数字方式以50 ns的数字方式演示了内存时间控制,频率转移的频率超过脉冲宽度($ \ pm39 $ MHz),并且带宽增加了三倍,从6 MHz增加到18 MHz。使用片上电极,以5 V的低施用偏置实现了高达3 kV/cm的电场,这使得该平台成为稀土离子的吸引力平台,稀土离子的平台经历了10 kHz/(v/cm)的鲜明阶段。

Quantum networks will enable a variety of applications, from secure communication and precision measurements to distributed quantum computing. Storing photonic qubits and controlling their frequency, bandwidth and retrieval time are important functionalities in future optical quantum networks. Here we demonstrate these functions using an ensemble of erbium ions in yttrium orthosilicate coupled to a silicon photonic resonator and controlled via on-chip electrodes. Light in the telecommunication C-band is stored, manipulated and retrieved using a dynamic atomic frequency comb protocol controlled by linear DC Stark shifts of the ion ensemble's transition frequencies. We demonstrate memory time control in a digital fashion in increments of 50 ns, frequency shifting by more than a pulse-width ($\pm39$ MHz), and a bandwidth increase by a factor of three, from 6 MHz to 18 MHz. Using on-chip electrodes, electric fields as high as 3 kV/cm were achieved with a low applied bias of 5 V, making this an appealing platform for rare earth ions, which experience Stark shifts of the order of 10 kHz/(V/cm).

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