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Large-scale modular quantum-computer architecture with atomic memory and photonic interconnects

机译:具有原子存储器和光子互连的大规模模块化量子计算机体系结构

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The practical construction of scalable quantum-computer hardware capable of executing nontrivial quantum algorithms will require the juxtaposition of different types of quantum systems. We analyze a modular ion trap quantum-computer architecture with a hierarchy of interactions that can scale to very large numbers of qubits. Local entangling quantum gates between qubit memories within a single register are accomplished using natural interactions between the qubits, and entanglement between separate registers is completed via a probabilistic photonic interface between qubits in different registers, even over large distances.We show that this architecture can be made fault tolerant, and demonstrate its viability for fault-tolerant execution of modest size quantum circuits.
机译:能够执行非平凡的量子算法的可伸缩量子计算机硬件的实际构造将需要并置不同类型的量子系统。我们分析了具有层次结构的相互作用的模块化离子阱量子计算机体系结构,该体系可以扩展到非常大量的量子位。单个寄存器中的量子位存储器之间的局部纠缠量子门是通过量子位之间的自然相互作用来完成的,而单独的寄存器之间的纠缠是通过不同寄存器中量子位之间的概率光子接口来完成的,即使在很长的距离上也是如此。做到了容错,并展示了其对于中等规模的量子电路的容错执行的可行性。

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