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Universal controlled-phase gate with cat-state qubits in circuit QED

机译:电路QED中具有Cat状态Qubits的通用控制相门

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摘要

Cat-state qubits (qubits encoded with cat states) have recently drawn intensive attention due to their enhanced lifetimes with quantum error correction. We here propose a method to implement a universal controlled-phase gate of two cat-state qubits via two microwave resonators coupled to a superconducting transmon qutrit. During the gate operation, the qutrit remains in the ground state; thus decoherence from the qutrit is greatly suppressed. This proposal requires only two basic operations and neither classical pulse nor measurement is needed; therefore the gate realization is simple. Numerical simulations showthat high-fidelity implementation of this gate is feasible with current circuit QED technology. The proposal is quite general and can be applied to implement the proposed gate with two microwave resonators or two optical cavities coupled to a single three-level natural or artificial atom.
机译:由于具有量子误差校正的增强的寿命,猫状态Qubits(用猫态编码)最近绘制了强化关注。 我们在此提出了一种通过两个微波谐振器实现两个Cat状态Qubits的通用控制相门,耦合到超导透射Qutrit。 在栅极操作期间,Qutrit仍然存在于地状态; 因此,从Qutrit中受到了极大的抑制。 该提案只需要两个基本操作,并且不需要经典脉冲和测量; 因此门实现很简单。 数值模拟显示该门的高保真实现是与电流电路QED技术的可行性。 该提议非常一般,可以应用于实施具有两个微波谐振器或两个光学腔的所提出的门,耦合到单个三级自然或人造原子。

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