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Scaling the neutral-atom Rydberg gate quantum computer by collective encoding in holmium atoms

机译:通过在encoding原子中进行集体编码来缩放中性原子Rydberg门量子计算机

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We discuss a method for scaling a neutral-atom Rydberg gate quantum processor to a large number of qubits.Limits are derived showing that the number of qubits that can be directly connected by entangling gates witherrors at the 10-3 level using long-range Rydberg interactions between sites in an optical lattice, withoutmechanical motion or swap chains, is about 500 in two dimensions and 7500 in three dimensions. A scalingfactor of 60 at a smaller number of sites can be obtained using collective register encoding in the hyperfineground states of the rare-earth atom holmium. We present a detailed analysis of operation of the 60-qubitregister in holmium. Combining a lattice of multiqubit ensembles with collective encoding results in a feasibledesign for a 1000-qubit fully connected quantum processor.
机译:我们讨论了一种将中性原子Rydberg门量子处理器缩放到大量量子位的方法,得出的限制表明,通过使用远程Rydberg纠缠10-3级的错误门可以直接连接的量子位数量无需机械运动或交换链,光学晶格中位点之间的相互作用在二维上约为500,在三维上约为7500。在稀土原子的超精细基态下,使用集体寄存器编码可以在较少的位置获得60的比例因子。我们对a 60位量子寄存器的操作进行了详细分析。将多量子位集成的格与集体编码相结合,可以实现1000量子位全连接量子处理器的可行设计。

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