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Compact and Tunable Forward Coupler Based on High-Impedance Superconducting Nanowires

Author(s)
Colangelo, Marco; Zhu, Di; Santavicca, Daniel F; Butters, Brenden A; Bienfang, Joshua C; Berggren, Karl K; ... Show more Show less
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Abstract
© 2021 American Physical Society. Developing compact, low-dissipation, cryogenic-compatible microwave electronics is essential for scaling up low-temperature quantum computing systems. In this paper, we demonstrate an ultracompact microwave directional forward coupler based on high-impedance slow-wave superconducting-nanowire transmission lines. The coupling section of the fabricated device has a footprint of 416μm2. At 4.753 GHz, the input signal couples equally to the through port and forward-coupling port (50:50) at -6.7dB with -13.5dB isolation. The coupling ratio can be controlled with dc bias current or temperature by exploiting the dependence of the kinetic inductance on these quantities. The material and fabrication processes are suitable for direct integration with superconducting circuits, providing a practical solution to the signal distribution bottlenecks in developing large-scale quantum computers.
Date issued
2021
URI
https://hdl.handle.net/1721.1/142771
Department
Massachusetts Institute of Technology. Research Laboratory of Electronics
Journal
Physical Review Applied
Publisher
American Physical Society (APS)
Citation
Colangelo, Marco, Zhu, Di, Santavicca, Daniel F, Butters, Brenden A, Bienfang, Joshua C et al. 2021. "Compact and Tunable Forward Coupler Based on High-Impedance Superconducting Nanowires." Physical Review Applied, 15 (2).
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