论文标题

使用非置换微波放大器的有效量子量测量

Efficient qubit measurement with a nonreciprocal microwave amplifier

论文作者

Lecocq, F., Ranzani, L., Peterson, G. A., Cicak, K., Jin, X. Y., Simmonds, R. W., Teufel, J. D., Aumentado, J.

论文摘要

观察量子对象的行为从根本上使其状态呈现,从而随机步行朝着测量算子的特征态。理想情况下,测量是造成量子状态的所有范围的原因。在实践中,测量设备的缺陷限制或破坏量子反馈协议所需的信息流,这是测量效率量化的效果。在这里,我们证明了使用非倒数参数放大器直接监视读取腔的微波炉场的有效测量量子。通过减轻腔与放大器之间的损失,我们达到了$ 72 \%$的尺寸效率。放大器的方向性可保护读出腔和值,免受放大真空波动引起的过量背相距。除了提供进一步改善强射射测量的忠诚度的工具外,这项工作还为理想弱测量的实验研究创建了一个测试床,并为基于弱测量(例如状态稳定或误差校正)的量子反馈方案开辟了道路。

The act of observing a quantum object fundamentally perturbs its state, resulting in a random walk toward an eigenstate of the measurement operator. Ideally, the measurement is responsible for all dephasing of the quantum state. In practice, imperfections in the measurement apparatus limit or corrupt the flow of information required for quantum feedback protocols, an effect quantified by the measurement efficiency. Here we demonstrate the efficient measurement of a superconducting qubit using a nonreciprocal parametric amplifier to directly monitor the microwave field of a readout cavity. By mitigating the losses between the cavity and the amplifier we achieve a measurement efficiency of $72\%$. The directionality of the amplifier protects the readout cavity and qubit from excess backaction caused by amplified vacuum fluctuations. In addition to providing tools for further improving the fidelity of strong projective measurement, this work creates a testbed for the experimental study of ideal weak measurements, and it opens the way towards quantum feedback protocols based on weak measurement such as state stabilization or error correction.

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