Observation of the AC Stark shift and idler-resonance in two-tone measurements of a Josephson resonator
ORAL
Abstract
We report on the behaviour of a nonlinear Josephson cavity driven by two microwave signals. Using a single tone, the cavity exhibits the expected Duffing response of the device at high powers. For two-tone measurements, we use a strong pump at frequency fp, and simultaneously measure the cavity with a weak probe. For fp > fc (cavity frequency), a Lorentzian response of the cavity is shifted in frequency, corresponding to the AC Stark-shift of the Josephson resonator. For fp < fc, we observe an abrupt jump in the shifted cavity frequency and an additional feature in the probe spectrum with net gain, occurring at a frequency mirrored about fp. We attribute this feature to resonance condition of an idler tone, generated by 4-wave mixing, with the cavity frequency, in good agreement with an analytical theory. Our results provide insight into the physics of the driven nonlinear Josephson cavity, and a starting point for exploring the strongly-driven quantum regime.
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Presenters
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Gary Steele
Delft University of Technology, Quantum Nanoscience, Delft University of Technology
Authors
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Fatemeh Fani Sani
Delft University of Technology
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Daniel Bothner
Delft University of Technology
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Ines C. Rodrigues
Delft University of Technology
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Gary Steele
Delft University of Technology, Quantum Nanoscience, Delft University of Technology