Crocker C, Lichtman M, Sosnova K, Carter A, Scarano S, Monroe C
Opt Express. 2019 Sep 30;27(20):28143-28149. doi: 10.1364/OE.27.028143.
Trapped atomic ions are an ideal candidate for quantum network nodes, with long-lived identical qubit memories that can be locally entangled through their Coulomb interaction and remotely entangled through photonic channels. The integrity of this photonic interface is generally reliant on the purity of single photons produced by the quantum memory. Here, we demonstrate a single-photon source for quantum networking based on a trapped Ba ion with a single photon purity of (0)=(8.1±2.3)×10 without background subtraction. We further optimize the tradeoff between the photonic generation rate and the memory-photon entanglement fidelity for the case of polarization photonic qubits by tailoring the spatial mode of the collected light.
囚禁的原子离子是量子网络节点的理想候选者,具有长寿命的相同量子比特存储器,这些存储器可以通过它们的库仑相互作用进行本地纠缠,并通过光子通道进行远程纠缠。这种光子接口的完整性通常依赖于量子存储器产生的单光子的纯度。在这里,我们展示了一种基于囚禁钡离子的用于量子网络的单光子源,在不进行背景扣除的情况下,单光子纯度为(0)=(8.1±2.3)×10 。我们还通过调整收集光的空间模式,进一步优化了极化光子量子比特情况下光子产生率与存储器 - 光子纠缠保真度之间的权衡。