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Article Dans Une Revue Physical Review A : Atomic, molecular, and optical physics [1990-2015] Année : 2006

Entanglement and decoherence of N atoms and a mesoscopic field in a cavity

Résumé

We investigate the behavior of N atoms resonantly coupled to a single electromagnetic field mode sustained by a high quality cavity, containing a mesoscopic coherent field. We show with a simple effective hamiltonian model that the strong coupling between the cavity and the atoms produces an atom-field entangled state, involving N+1 nearly-coherent components slowly rotating at different paces in the phase plane. The periodic overlap of these components results in a complex collapse and revival pattern for the Rabi oscillation. We study the influence of decoherence due to the finite cavity quality factor. We propose a simple analytical model, based on the Monte Carlo approach to relaxation. We compare its predictions with exact calculations and show that these interesting effects could realistically be observed on a two or three atoms sample in a 15 photons field with circular Rydberg atoms and superconducting cavities.
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Dates et versions

hal-00021520 , version 1 (22-03-2006)
hal-00021520 , version 2 (11-09-2006)

Identifiants

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Tristan Meunier, Arnaud Le Diffon, Clément Rueff, Pascal Degiovanni, Jean-Michel Raimond. Entanglement and decoherence of N atoms and a mesoscopic field in a cavity. Physical Review A : Atomic, molecular, and optical physics [1990-2015], 2006, 74, pp.033802. ⟨10.1103/PhysRevA.74.033802⟩. ⟨hal-00021520v2⟩
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