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Entanglement and teleportation between polarization and wave-like encodings of an optical qubit

机译:光学量子比特的偏振和波状编码之间的纠缠和隐形传态

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摘要

Light is an irreplaceable means of communication among various quantum information processing and storage devices. Due to their different physical nature, some of these devices couple more strongly to discrete, and some to continuous degrees of freedom of a quantum optical wave. It is therefore desirable to develop a technological capability to interconvert quantum information encoded in these degrees of freedom. Here we generate and characterize an entangled state between a dual-rail (polarization-encoded) single-photon qubit and a qubit encoded as a superposition of opposite-amplitude coherent states. We furthermore demonstrate the application of this state as a resource for the interfacing of quantum information between these encodings. In particular, we show teleportation of a polarization qubit onto a freely propagating continuous-variable qubit.
机译:光是各种量子信息处理和存储设备之间不可替代的通信方式。由于它们的不同物理性质,这些设备中的一些更牢固地耦合到离散光,而某些耦合到连续的量子光波自由度。因此,期望发展一种技术能力以对以这些自由度编码的量子信息进行互转换。在这里,我们生成并表征了双轨(偏振编码)单光子量子位和编码为相反幅度相干态的叠加的量子位之间的纠缠态。我们进一步证明了该状态作为这些编码之间的量子信息接口的资源的应用。特别是,我们显示了极化量子位到自由传播的连续变量量子位上的隐形传态。

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