Abstract

We consider the two-atom cavity quantum electrodynamics system subject to standard Markovian damping and dephasing mechanisms, and study the asymptotic system state achieved via relaxation in the presence of anti-rotating terms in the Hamiltonian. Using the two-photon approximation, we investigate the behavior of the errors in the zero-excitation state preparation as a function of system parameters, showing that the errors vary typically in the range 0.01–1%.

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