Reservoir engineering with one degree of freedom: the role of the dimension of the Hilbert space

Physics – Quantum Physics

Scientific paper

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12 pages, 4 figures

Scientific paper

We show that one microwave mode constructed in a lossless superconducting cavity can be used to engineer a reservoir that destroys, in an effectively irreversible fashion, the quantum coherences of a Rydberg atom coupled to it. The central role is played by the dimension of the Hilbert space occupied by the dynamics of the whole system. We propose new ways to quantify the decoherence time and the effectiveness of decoherence process.

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