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Rabi oscillations in a superconducting nanowire circuit
Physicsnpj Quantum Materials

Rabi oscillations in a superconducting nanowire circuit

Y. Schön, J. N. Voss, et al.

This groundbreaking research dives into the circuit quantum electrodynamics of superconducting nanowire oscillators, revealing astonishing microsecond-range coherence lifetimes despite challenges like material disorder. Conducted by an expert team including Yannick Schön and Jan Nicolas Voss from the Karlsruhe Institute of Technology, this study opens new avenues in quantum technology.... show more
Abstract
We investigate the circuit quantum electrodynamics of anharmonic superconducting nanowire oscillators. The sample circuit consists of a capacitively shunted nanowire with a width of about 20 nm and a varying length up to 350 nm, capacitively coupled to an on-chip resonator. By applying microwave pulses we observe Rabi oscillations, measure coherence times and the anharmonicity of the circuit. Despite the very compact design, simple top-down fabrication and high degree of disorder in the oxidized (granular) aluminum material used, we observe lifetimes in the microsecond range.
Publisher
npj Quantum Materials
Published On
Mar 13, 2020
Authors
Yannick Schön, Jan Nicolas Voss, Micha Wildermuth, Andre Schneider, Sebastian T. Skacel, Martin P. Weides, Jared H. Cole, Hannes Rotzinger, Alexey V. Ustinov
Tags
quantum electrodynamicssuperconducting nanowirescoherence timesanharmonicityRabi oscillationsmicrowave pulsesmaterial disorder
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