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- W2059544239 abstract "We theoretically investigate light propagation and electromagnetically induced transparency in a quasi-one-dimensional gas in which atoms interact strongly via exchange interactions. We focus on the case in which the gas is initially prepared in a many-body state that contains a single excitation and conduct a detailed study of the absorptive and dispersive properties of such a medium. This scenario is achieved in interacting gases of Rydberg atoms with two relevant $S$ states that are coupled through exchange. Of particular interest is the case in which the medium is prepared in an entangled spin-wave state. This, in conjunction with the exchange interaction, gives rise to a nonlocal susceptibility that---in comparison to conventional Rydberg electromagnetically induced transparency---qualitatively alters the absorption and propagation of weak probe light, leading to nonlocal propagation and enhanced absorption." @default.
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- W2059544239 date "2014-06-18" @default.
- W2059544239 modified "2023-10-04" @default.
- W2059544239 title "Electromagnetically Induced Transparency in an Entangled Medium" @default.
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- W2059544239 doi "https://doi.org/10.1103/physrevlett.112.243601" @default.
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