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DOE OSTI · 1970584

Overlap junctions for superconducting quantum electronics and amplifiers

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Abstract

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 two layers. This efficient fabrication process yields frequency-tunable devices with negligible insertion loss, a gain of ∼30 dB, and quantum limited noise performance. 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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BibTeXRIS

Bal, Mustafa (ORCID:0000000307516774), Long, Junling, Zhao, Ruichen (ORCID:000000019498727X), Wang, Haozhi (ORCID:000000029788357X), Park, Sungoh, McRae, Corey Rae Harrington (ORCID:0000000203304646), Zhao, Tongyu, Lake, Russell E., Monarkha, Volodymyr, Simbierowicz, Slawomir (ORCID:0000000224357544), Frolov, Daniil (ORCID:0000000150028341), Pilipenko, Roman, Zorzetti, Silvia, Romanenko, Alexander, Liu, Chuan-Hong (ORCID:0000000231982460), McDermott, Robert, Pappas, David P.. 2021-03-15. Overlap junctions for superconducting quantum electronics and amplifiers. https://doi.org/10.1063/5.0048621

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