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首页> 外文期刊>Annals of Physics >Controllable quantum information network with a superconducting system
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Controllable quantum information network with a superconducting system

机译:具有超导系统的可控量子信息网络

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We propose a controllable and scalable architecture for quantum information processing using a superconducting system network, which is composed of current-biased Josephson junctions (CBJJs) as tunable couplers between the two superconducting transmission line resonators (TLRs), each coupling to multiple superconducting qubits (SQs). We explicitly demonstrate that the entangled state, the phase gate, and the information transfer between any two selected SQs can be implemented, respectively. Lastly, numerical simulation shows that our scheme is robust against the decoherence of the system.
机译:我们提出了一种使用超导系统网络进行量子信息处理的可控和可扩展架构,该网络由电流偏置的约瑟夫逊结(CBJJ)作为两个超导传输线谐振器(TLR)之间的可调耦合器组成,每个耦合至多个超导量子位( SQs)。我们明确证明可以分别实现纠缠状态,相位门和任意两个选定SQ之间的信息传递。最后,数值模拟表明我们的方案对于系统的退相干具有鲁棒性。

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