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On damping of Rabi oscillations in two-photon Raman excitation in cold $^{87}$Rb atoms

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arxiv 2503.13959 v2 pith:AGVSY657 submitted 2025-03-18 physics.atom-ph

classification physics.atom-ph
keywords beenrabiatomdampingoscillationsramanduringexcitation
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abstract

Two-photon Raman excitation between the ground hyperfine states $|5 \ ^2S_{1/2}, F = 2\rangle$ and $|5 \ ^2S_{1/2}, F = 1\rangle$ of $^{87}$Rb atom has been experimentally studied. The Rabi coupling strengths of various transition involved have been calculated in presence of a weak magnetic field. A density matrix formalism has been developed to understand the experimentally observed damping of Rabi oscillations of population in a hyperfine state of $^{87}$Rb atom during interaction with the Raman laser beams. The observed damping of Rabi oscillations has been attributed to the dephasing during the light atom interaction.

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  1. Multi-Photon Quantum Rabi Models with Center-of-Mass Motion

    quant-ph 2025-07 conditional novelty 6.0 of 10

    A second-quantized multi-Lambda cavity model yields an effective Raman beam-splitter Hamiltonian that predicts Hong-Ou-Mandel bunching for both atoms and photons.

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