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Trapped Ion Quantum Computing Superconducting Qubits

Fano-enhanced low-loss on-chip superconducting microwave circulator

arXiv
Authors: N. Pradeep Kumar, Dat Thanh Le, Prasanna Pakkiam, Thomas M. Stace, Arkady Fedorov

Year

2024

Paper ID

66256

Status

Preprint

Abstract Read

~2 min

Abstract Words

128

Citations

N/A

Abstract

Ferrite-free circulators that are passive and readily integratable on a chip are highly sought-after in quantum technologies based on superconducting circuits. In our previous work, we implemented such a circulator using a three-Josephson-junction loop that exhibited unambiguous nonreciprocity and signal circulation, but required junction energies to be within 1\% of design values. This tolerance is tighter than standard junction fabrication methods provide, so we propose and demonstrate a design improvement that relaxes the required junction fabrication precision, allowing for higher device performance and fabrication yield. Specifically, we introduce large direct capacitive couplings between the waveguides to create strong Fano scattering interference. We measure enhanced `circulation fidelity' above 97\%, with optimised on-resonance insertion loss of 0.2 dB, isolation of 18 dB, and power reflectance of -15 dB, in good agreement with model calculations.

Why This Paper Matters

  • This paper contributes to the Superconducting Qubits research area in the Quantum Articles archive.
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  • Ferrite-free circulators that are passive and readily integratable on a chip are highly sought-after in quantum technologies based on superconducting circuits.

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