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Bosman, S.J. (author), Gely, M.F. (author), Singh, Vibhor (author), Bruno, A. (author), Bothner, D. (author), Steele, G.A. (author)
With the introduction of superconducting circuits into the field of quantum optics, many experimental demonstrations of the quantum physics of an artificial atom coupled to a single-mode light field have been realized. Engineering such quantum systems offers the opportunity to explore extreme regimes of light-matter interaction that are...
journal article 2017
document
Bosman, S.J. (author), Gely, M.F. (author), Singh, Vibhor (author), Bothner, D. (author), Castellanos-Gomez, Andres (author), Steele, G.A. (author)
In this experiment, we couple a superconducting transmon qubit to a high-impedance 645Ω microwave resonator. Doing so leads to a large qubit-resonator coupling rate g, measured through a large vacuum Rabi splitting of 2g≃910 MHz. The coupling is a significant fraction of the qubit and resonator oscillation frequencies ω, placing our system...
journal article 2017
document
Yanai, S. (author), Singh, V. (author), Yuan, M. (author), Gely, M.F. (author), Bosman, S.J. (author), Steele, G.A. (author)
We experimentally investigate dissipation in mechanical resonators made of a disordered superconducting thin film of a Molybdenum-Rhenium(MoRe) alloy. Electrostatically driving the drum with a resonant AC voltage, we detect its motion using a superconducting microwave cavity. From the temperature dependence of mechanical resonance frequencies...
journal article 2017