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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Asymmetry and decoherence in a double-layer persistent-current qubit
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Asymmetry and decoherence in a double-layer persistent-current qubit

机译:双层持续电流量子位中的不对称和退相干

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摘要

Superconducting circuits fabricated using the widely used shadow evaporation technique can contain unintended junctions that change their quantum dynamics. We discuss a superconducting flux qubit design that exploits the symmetries of a circuit to protect the qubit from unwanted coupling to the noisy environment, in which the unintended junctions can spoil the quantum coherence. We present a theoretical model based on a recently developed circuit theory for superconducting qubits and calculate relaxation and decoherence times that can be compared with existing experiments. Furthermore, the coupling of the qubit to a circuit resonance (plasmon mode) is explained in terms of the asymmetry of the circuit. Finally, possibilities for prolonging the relaxation and decoherence times of the studied superconducting qubit are proposed on the basis of the obtained results.
机译:使用广泛使用的阴影蒸发技术制造的超导电路可能包含意外的结,从而改变了它们的量子动力学。我们讨论了一种超导通量量子比特设计,该设计利用电路的对称性来保护量子比特免受有害耦合到嘈杂环境的影响,在这种环境中,意外的结会破坏量子相干性。我们基于超导量子位的最新电路原理提出了一种理论模型,并计算了可以与现有实验进行比较的弛豫时间和退相干时间。此外,根据电路的不对称性来解释量子位与电路谐振(等离子体激元模式)的耦合。最后,根据获得的结果,提出了延长所研究的超导量子位的弛豫和退相干时间的可能性。

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