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Shortcuts to adiabatic for implementing controlled phase gate with Cooper-pair box qubits in circuit quantum electrodynamics system

机译:电路量子电动力系统中的COOPER-对盒Qubits实现控制阶段栅极的绝热性的快捷方式

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摘要

We theoretically present a protocol to realize the controlled phase gate with Cooper-pair box (CPB) qubits in circuit quantum electrodynamics (circuit QED) system. In this protocol, the one-dimensional transmission line resonator in circuit QED system acting as quantum data bus generates a common cavity mode and interacts with each CPB qubit. The Rabi frequencies of driven pluses can be designed with simple Gaussian or trigonometric functions by utilizing the universal SU(2) transformation. Moreover, the level configurations of CPB qubits have been reported by previous protocol(Feng and Zhang in Phys C 470:240-243, 2010). Thus, the protocol can be realized easily in experiment. In addition, the influence of various decoherence processes such as spontaneous emissions, dephasings of the CPB qubits and the decay of the cavity mode on the fidelity is discussed by numerical simulations. The results show that the protocol is robust against the decoherence and parameter variations. Therefore, the protocol may be useful for the fields of quantum computations.
机译:理论上,我们提出了一种协议,以实现具有COOPOR-对框(CPB)电路量子电动电动电动(电路QED)系统的COOPER-对盒(CPB)的控制相位栅极。在该协议中,作为量子数据总线的电路QED系统中的一维传输线谐振器产生公共腔模式并与每个CPB QUBET交互。通过利用通用SU(2)转换,可以使用简单的高斯或三角函数来设计驱动频率。此外,先前的协议(冯和Zhang In Phys C 470:240-243,2010)报告了CPB Qubits的水平配置。因此,可以在实验中容易地实现方案。此外,通过数值模拟讨论了诸如自发排放等自发排放,CPB QUBITS的去除和腔模式的衰减的影响。结果表明,该协议对抵抗脱机和参数变体具有稳健。因此,该协议可能对量子计算的字段非常有用。

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