Atalaya Juan, Hacohen-Gourgy Shay, Siddiqi Irfan, Korotkov Alexander N
Department of Electrical and Computer Engineering, University of California, Riverside, California 92521, USA.
Quantum Nanoelectronics Laboratory, Department of Physics, University of California, Berkeley, California 94720, USA.
Phys Rev Lett. 2019 Jun 7;122(22):223603. doi: 10.1103/PhysRevLett.122.223603.
We consider the effect of phase backaction on the correlator ⟨I(t)I(t+τ)⟩ for the output signal I(t) from continuous measurement of a qubit. We demonstrate that the interplay between informational and phase backactions in the presence of Rabi oscillations can lead to the correlator becoming larger than 1, even though |⟨I⟩|≤1. The correlators can be calculated using the generalized "collapse recipe," which we validate using the quantum Bayesian formalism. The recipe can be further generalized to the case of multitime correlators and arbitrary number of detectors, measuring non-commuting qubit observables. The theory agrees well with experimental results for continuous measurement of a transmon qubit. The experimental correlator exceeds the bound of 1 for a sufficiently large angle between the amplified and informational quadratures, causing the phase backaction. The demonstrated effect can be used to calibrate the quadrature misalignment.
我们考虑相位反作用对量子比特连续测量输出信号(I(t))的关联函数(\langle I(t)I(t + \tau)\rangle)的影响。我们证明,在存在拉比振荡的情况下,信息反作用和相位反作用之间的相互作用会导致关联函数大于(1),尽管(|\langle I\rangle|\leq1)。关联函数可以使用广义的“坍缩规则”来计算,我们使用量子贝叶斯形式主义对其进行了验证。该规则可以进一步推广到多时间关联函数以及任意数量探测器的情况,这些探测器测量非对易的量子比特可观测量。该理论与跨导量子比特连续测量的实验结果吻合良好。对于放大正交分量和信息正交分量之间足够大的夹角,实验关联函数超过了(1)的界限,从而导致相位反作用。所展示的效应可用于校准正交失准。