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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Resonator–zero-qubit architecture for superconducting qubits
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Resonator–zero-qubit architecture for superconducting qubits

机译:谐振器-零量子比特架构,用于超导量子比特

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摘要

We analyze the performance of the resonator—zero-qubit (RezQu) architecture in which the qubits are complemented by memory resonators and coupled via a resonator bus. Separating the stored information from the rest of the processing circuit by at least two coupling steps and the zero qubit state results in a significant increase in the on-to-off ratio and a reduction in the idling error. Assuming no decoherence, we calculate such idling error, as well as the errors for the MOVE operation and tunneling measurement, and show that the RezQu architecture can provide the high-fidelity performance required for medium-scale quantum information processing.
机译:我们分析了谐振器的性能-零量子位(RezQu)架构,其中的量子位由存储谐振器补充并通过谐振器总线耦合。通过至少两个耦合步骤和零量子位状态将存储的信息与处理电路的其余部分分开,从而导致通断比显着增加,并且空载误差减小。假设没有退相干,我们可以计算出这种空载误差以及MOVE操作和隧穿测量的误差,并表明RezQu体系结构可以提供中等规模量子信息处理所需的高保真性能。

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