High speed spatially multimode Λ-type atomic memory with arbitrary frequency detuning

We present a general model for an atomic memory using ultra-short pulses of light, which allows both spatial and temporal multimode storage. The process involves the storage of a faint quantum light pulse into the spin coherence of the ground state of Λ -type 3-level atoms, in the presence of a stro...

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Veröffentlicht in:The European physical journal. D, Atomic, molecular, and optical physics Atomic, molecular, and optical physics, 2012-10, Vol.66 (10), Article 275
Hauptverfasser: Golubeva, T., Golubev, Y. M., Mishina, O., Bramati, A., Laurat, J., Giacobino, E.
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Sprache:eng
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Zusammenfassung:We present a general model for an atomic memory using ultra-short pulses of light, which allows both spatial and temporal multimode storage. The process involves the storage of a faint quantum light pulse into the spin coherence of the ground state of Λ -type 3-level atoms, in the presence of a strong driving pulse. Our model gives a full description of the evolution of the field and of the atomic coherence in space and time throughout the writing and the read-out processes. It is valid for any frequency detuning, from the resonant case to the Raman case, and allows a detailed optimization of the memory efficiency.
ISSN:1434-6060
1434-6079
DOI:10.1140/epjd/e2012-20723-3