Physical Review Letters · 2007 · 296 citations · 19 references
We demonstrate the reversible mapping of a coherent state of light with a mean photon number (-)n approximately equal to 1.1 to and from the hyperfine states of an atom trapped within the mode of a high-finesse optical cavity. The coherence of the basic processes is verified by mapping the atomic state back onto a field state in a way that depends on the phase of the original coherent state. Our experiment represents an important step toward the realization of cavity QED-based quantum networks, wherein coherent transfer of quantum states enables the distribution of quantum information across the network.
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Quantum cryptography based on Bell’s theorem
Artur Ekert · Physical Review Letters · 1991 · 10.4K citations
Quantum Repeaters: The Role of Imperfect Local Operations in Quantum Communication
H. J. Briegel, Wolfgang Dür, J. I. Cirac et al. · Physical Review Letters · 1998 · 3.3K citations