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Room-Temperature Solid-State Quantum Processors in Diamond

机译:钻石室温固态量子处理器

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We are developing solid-state quantum repeaters for long-distance, secure quantum communication networks. These repeaters will combine long-range quantum entanglement, produced by optical measurements, with local few-qubit quantum processing and storage nodes. So far we have demonstrated all the key elements of the local quantum processors using nitrogen-vacancy (NV) color centers in diamond. These include multi-qubit entanglement, long storage times, and robustness against multiple re-initialization steps. Significantly, all these local operations were demonstrated at room temperature. Finally, we estimate that single shot readout should be achievable with optical plasmon wire coupling which would open the door to room-temperature few-qubit quantum computers.
机译:我们正在为长距离,安全量子通信网络开发固态量子中继器。这些中继器将结合通过光学测量产生的远程量子纠缠,其中包括局部几个Qubit量子处理和存储节点。到目前为止,我们已经使用钻石中的氮气空位(NV)颜色中心展示了本地量子处理器的所有关键要素。这些包括多Qubit纠缠,长存储时间和针对多个重新初始化步骤的鲁棒性。值得注意的是,所有这些本地操作都在室温下证明。最后,我们估计,应通过光学等离子体线耦合来实现单次拍摄,该光栅线耦合将打开大门到室温的几个Qubit量子计算机。

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