论文标题

使用片上微波光子计数器对超导量子标立的高保真测量

High-Fidelity Measurement of a Superconducting Qubit using an On-Chip Microwave Photon Counter

论文作者

Opremcak, A., Liu, C. H., Wilen, C., Okubo, K., Christensen, B. G., Sank, D., White, T. C., Vainsencher, A., Giustina, M., Megrant, A., Burkett, B., Plourde, B. L. T., McDermott, R.

论文摘要

我们描述了使用片上微波光子计数器对超导量子标准进行高保真测量的方法。该协议依赖于分散耦合的测量谐振器的瞬态响应,以将量子的状态映射到“明亮”和“暗”腔指针状态,这些指针的特征是大差分光子占用。在此映射之后,我们使用Josephson Photolultipler(JPM)对谐振器进行了对谐振器的光检查,后者在腔体光子占用超过一定阈值时在经典可区分的通量状态之间过渡。我们的技术可在Millikelvin阶段访问投影量量子测量的二元结果,而无需在室温下进行量子限制的前置放大和阈值。在500 ns以下的总测量时间中,我们在多个样品中实现了多个样品的原始单杆测量保真度超过98%。此外,我们表明,可以通过利用JPM本身的内在阻尼来减轻与我们的测量协议相关的背部和串扰。

We describe an approach to the high-fidelity measurement of a superconducting qubit using an on-chip microwave photon counter. The protocol relies on the transient response of a dispersively coupled measurement resonator to map the state of the qubit to "bright" and "dark" cavity pointer states that are characterized by a large differential photon occupation. Following this mapping, we photodetect the resonator using the Josephson Photomultipler (JPM), which transitions between classically distinguishable flux states when cavity photon occupation exceeds a certain threshold. Our technique provides access to the binary outcome of projective quantum measurement at the millikelvin stage without the need for quantum-limited preamplification and thresholding at room temperature. We achieve raw single-shot measurement fidelity in excess of 98% across multiple samples using this approach in total measurement times under 500 ns. In addition, we show that the backaction and crosstalk associated with our measurement protocol can be mitigated by exploiting the intrinsic damping of the JPM itself.

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