论文标题

超导量子电子和放大器的重叠连接

Overlap junctions for superconducting quantum electronics and amplifiers

论文作者

Bal, Mustafa, Long, Junling, Zhao, Ruichen, Wang, Haozhi, Park, Sungoh, McRae, Corey Rae Harrington, Zhao, Tongyu, Lake, Russell E., Frolov, Daniil, Pilipenko, Roman, Zorzetti, Silvia, Romanenko, Alexander, Pappas, David P.

论文摘要

由于其独特的属性是无损的非线性电路元素,约瑟夫森连接处于超导量子信息处理的核心。以前,我们证明了一个两层尺度的重叠连接工艺,适用于长时间相干时间的量子。在这里,我们将重叠连接过程扩展到千分尺尺度连接。这使我们能够制造其他超导量子设备。例如,我们演示了一个基于重叠的约瑟夫森参数放大器,该放大器仅使用2层。这种有效的制造工艺可产生可识别的插入损失,增益约30 dB。与其他过程相比,重叠连接可以通过最小的基础设施,高收益和最先进的设备性能进行制造。

Due to their unique properties as lossless, nonlinear circuit elements, Josephson junctions lie at the heart of superconducting quantum information processing. Previously, we demonstrated a two-layer, submicrometer-scale overlap junction fabrication process suitable for qubits with long coherence times. Here, we extend the overlap junction fabrication process to micrometer-scale junctions. This allows us to fabricate other superconducting quantum devices. For example, we demonstrate an overlap-junction-based Josephson parametric amplifier that uses only 2 layers. This efficient fabrication process yields frequency-tunable devices with negligible insertion loss and a gain of ~ 30 dB. Compared to other processes, the overlap junction allows for fabrication with minimal infrastructure, high yield, and state-of-the-art device performance.

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