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Efficient Teleportation Between Remote Single-Atom Quantum Memories

机译:远程单原子量子内存之间的高效传送

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We demonstrate teleportation of quantum bits between two single atoms in distant laboratories. Using a time-resolved photonic Bell-state measurement, we achieve a teleportation fidelity of (88.0 ± 1.5)%, largely determined by our entanglement fidelity. The low photon collection efficiency in free space is overcome by trapping each atom in an optical cavity. The resulting success probability of 0.1% is almost 5 orders of magnitude larger than in previous experiments with remote material qubits. It is mainly limited by photon propagation and detection losses and can be enhanced with a cavity-based deterministic Bell-state measurement.%140403.1-140403.5
机译:我们演示了在遥远的实验室中两个单个原子之间的量子位的隐形传态。使用时间分辨的光子贝尔状态测量,我们可以实现(88.0±1.5)%的传送保真度,这在很大程度上取决于我们的纠缠保真度。通过将每个原子捕获在光学腔中,可以克服自由空间中低的光子收集效率。最终获得的0.1%的成功概率比以前使用远程材料qubit进行的实验大了近5个数量级。它主要受光子传播和检测损耗的限制,并且可以通过基于腔的确定性贝尔状态测量得到增强。%140403.1-140403.5

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