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Quantum Zeno effect in the strong measurement regime of circuit quantum electrodynamics

机译:电路量子电动力学的强测量范围中的量子芝诺效应

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We observe the quantum Zeno effect—where the act of measurement slows the rate of quantum state transitions—in a superconducting qubit using linear circuit quantum electrodynamics readout and a near-quantum-limited following amplifier. Under simultaneous strong measurement and qubit drive, the qubit undergoes a series of quantum jumps between states. These jumps are visible in the experimental measurement record and are analyzed using maximum likelihood estimation to determine qubit transition rates. The observed rates agree with both analytical predictions and numerical simulations. The analysis methods are suitable for processing general noisy random telegraph signals.
机译:我们使用线性电路量子电动力学读数和接近量子限制的跟随放大器,在超导量子比特中观察到了量子芝诺效应(在这种情况下,测量行为会减慢量子态跃迁的速率)。在强大的测量和量子位驱动的同时,量子位在状态之间经历了一系列的量子跃迁。这些跃迁在实验测量记录中可见,并使用最大似然估计进行分析以确定量子位转换速率。观测到的速率与分析预测和数值模拟都一致。该分析方法适用于处理一般的带噪随机电报信号。

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