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Quantum dynamics of superconducting nano-circuits: phase qubit, charge qubit and rhombi chains

机译:超导纳米电路的量子动力学:相量子位,电荷量子位和菱形链

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摘要

We have studied different quantum dynamics of superconducting nano-circuits with Josephson junctions. A dc SQUID, when it is strongly decoupled from the environment, demonstrates two-level and multilevel dynamics. We have realized a two qubits coupled circuit based on a dc SQUID in parallel with an asymmetric Cooper pair transistor (ACPT). The ACPT behaves as a charge qubit. Its asymmetry produces a strong tunable coupling with the dc SQUID which is used to realize entangled states between the two qubits and new read-out of the charge qubit based on adiabatic quantum transfer. We have measured the current-phase relations of different rhombi chains in the presence or absence of quantum fluctuations which confirm theoretical predictions.
机译:我们研究了具有约瑟夫森结的超导纳米电路的不同量子动力学。 dc SQUID与环境强烈分离时,它表现出两级和多级动态。我们已经实现了一个基于dc SQUID的两个qubit耦合电路,该电路与非对称Cooper对晶体管(ACPT)并联。 ACPT表现为电荷量子位。它的不对称性与dc SQUID产生了强大的可调耦合,该耦合用于实现两个量子位之间的纠缠态,并基于绝热量子转移来重新读取电荷量子位。我们已经测量了在存在或不存在量子波动的情况下不同菱形链的电流-相位关系,这证实了理论预测。

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