Abstract
We investigate the influence of temperature and dissipation on the Landau-Zener transition probability in circuit QED. Dissipation is modelled by coupling the transmission line to a bath of harmonic oscillators, and the reduced density operator is treated within Bloch-Redfield theory. A phase-space representation allows an efficient numerical implementation of the resulting master equation. It provides reliable results which are valid even for rather low temperatures. We find that the spin-flip probability as a function of temperature and dissipation strength exhibits a non-monotonic behaviour. Our numerical results are complemented by analytical solutions for zero temperature and for vanishing dissipation strength. © IOP Publishing Ltd and Deutsche Physikalische Gesellschaft.
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CITATION STYLE
Zueco, D., Hänggi, P., & Kohler, S. (2008). Landau-Zener tunnelling in dissipative circuit QED. New Journal of Physics, 10. https://doi.org/10.1088/1367-2630/10/11/115012
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