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Quantum network with individual atoms and photons

机译:具有单个原子和光子的量子网络

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Quantum physics allows a new approach to information processing. A grand challenge is the realization of a quantum network for long-distance quantum communication and large-scale quantum simulation. This paper highlights a first implementation of an elementary quantum network with two fibre-linked high-finesse optical resonators, each containing- a single quasi-permanently trapped atom as a stationary quantum node. Reversible quantum state transfer between the two atoms and entanglement of the two atoms are achieved by the controlled exchange of a time-symmetric single photon. This approach to quantum networking is efficient and offers a clear perspective for scalability. It allows for arbitrary topologies and features controlled connectivity as well as, in principle, infinite-range interactions. Our system constitutes the largest man-made material quantum system to date and is an ideal test bed for fundamental investigations, e.g. quantum non-locality.
机译:量子物理允许新的信息处理方法。大挑战是实现长距离量子通信和大规模量子仿真量子网络的实现。本文突出了具有两个光纤链接高精度光学谐振器的基本量子网络的第一实现,每个光纤谐振器都包含一个作为静止量子节点的单个准永久被截图原子。通过对两个原子的两个原子和缠结之间的可逆量子状态传递通过受控交换的时间对称单光子来实现。这种对量子网络的方法是有效的,并且提供了一种明确的可扩展性的视角。它允许任意拓扑结构和特征控制连接以及原则上的无限范围的相互作用。我们的系统迄今为止是最大的人造材料量子系统,是一个理想的测试床,用于基本调查,例如,量子非地方。

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