2010
DOI: 10.1088/1674-1056/19/7/074207
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Single-atom entropy squeezing and quantum entanglement in Tavis–Cummings model with atomic motion

Abstract: We examine the single-atom entropy squeezing and the atom-field entanglement in a system of two moving twolevel atoms interacting with a single-mode coherent field in a lossless resonant cavity. Our numerical calculations indicate that the squeezing period, the squeezing time and the maximal squeezing can be controlled by appropriately choosing the atomic motion and the field-mode structure. The atomic motion leads to a periodical time evolution of entanglement between the two-atom and the field. Moreover, the… Show more

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