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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Qubit measurement error from coupling with a detuned neighbor in circuit QED
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Qubit measurement error from coupling with a detuned neighbor in circuit QED

机译:与电路QED中失谐的邻居耦合产生的量子位测量误差

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In modern circuit QED architectures, superconducting transmon qubits are measured via the state-dependent phase and amplitude shift of a microwave field leaking from a coupled resonator. Determining this shift requires integrating the field quadratures for a nonzero duration, which can permit unwanted concurrent evolution. Here we investigate such dynamical degradation of the measurement fidelity caused by a detuned neighboring qubit. We find that in realistic parameter regimes, where the qubit ensemble-dephasing rate is slower than the qubit-qubit detuning, the joint qubit-qubit eigenstates are better discriminated by measurement than the bare states. Furthermore, we show that when the resonator leaks much more slowly than the qubit-qubit detuning, the measurement tracks the joint eigenstates nearly adiabatically. However, the measurement process also causes rare quantum jumps between the eigenstates. The rate of these jumps becomes significant if the resonator decay is comparable to or faster than the qubit-qubit detuning, thus significantly degrading the measurement fidelity in a manner reminiscent of energy relaxation processes.
机译:在现代电路QED架构中,超导跨极量子比特是通过从耦合谐振器泄漏的微波场的状态相关相位和幅度偏移来测量的。确定这种偏移需要在非零持续时间内对场正交积分,这可能会导致不必要的并发演化。在这里,我们研究由失谐的相邻量子位引起的测量保真度的这种动态降低。我们发现,在现实的参数体制中,量子比特集合相移速率比量子比特-量子比特失谐速率慢,联合量子比特-量子比特本征态通过测量比裸露状态更好地被区分。此外,我们显示出,当谐振器泄漏的速度远比qubit-qubit失谐慢时,测量几乎绝热地跟踪了关节的本征态。但是,测量过程也会在本征态之间引起罕见的量子跃变。如果谐振器的衰变与qubit-qubit失谐相当或比qubit-qubit失谐更快,则这些跃变的速率将变得很重要,从而以令人联想到能量弛豫过程的方式显着降低测量保真度。

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