论文标题

通过混合纠缠交换连接异质量子网络

Connecting heterogeneous quantum networks by hybrid entanglement swapping

论文作者

Guccione, G., Darras, T., Jeannic, H. Le, Verma, V. B., Nam, S. W., Cavaillès, A., Laurat, J.

论文摘要

量子技术的最新进展正在迅速刺激量子网络的构建。随着多个物理平台和不同类型的编码的并行开发,对当前和未来网络的挑战是维护完整功能的异质结构,因此支持不一定彼此兼容的模块化系统。这项努力的核心是依靠不同离散和连续量子变量的分布和互连光学纠缠状态的能力。在这里,我们报告了连接此类纠缠状态的纠缠交换协议。我们在类似粒子和波浪状光学量子之间生成单光子纠缠和杂种纠缠,然后通过使用特定的铃铛测量来证明远距离的杂种纠缠创建。这种能力打开了将网络的异质节点连接起来的前景,并有望增加集成和新颖的功能。

Recent advances in quantum technologies are rapidly stimulating the building of quantum networks. With the parallel development of multiple physical platforms and different types of encodings, a challenge for present and future networks is to uphold a heterogeneous structure for full functionality and therefore support modular systems that are not necessarily compatible with one another. Central to this endeavor is the capability to distribute and interconnect optical entangled states relying on different discrete and continuous quantum variables. Here we report an entanglement swapping protocol connecting such entangled states. We generate single-photon entanglement and hybrid entanglement between particle-like and wave-like optical qubits, and then demonstrate the heralded creation of hybrid entanglement at a distance by using a specific Bell-state measurement. This ability opens up the prospect of connecting heterogeneous nodes of a network, with the promise of increased integration and novel functionalities.

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