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Entanglement properties between two atoms in the binomial optical field interacting with two entangled atoms
Affiliation:1.College of Physics and Electronic Science, Hubei Normal University, Huangshi 435002, China;2.Hubei Engineering Profession Institute, Huangshi 435004, China
Abstract:The temporal evolution of the degree of entanglement between two atoms in a system of the binomial optical field interacting with two arbitrary entangled atoms is investigated. The influence of the strength of the dipole-dipole interaction between two atoms, probabilities of the Bernoulli trial, and particle number of the binomial optical field on the temporal evolution of the atomic entanglement are discussed. The result shows that the two atoms are always in the entanglement state. Moreover, if and only if the two atoms are initially in the maximally entangled state, the entanglement evolution is not affected by the parameters, and the degree of entanglement is always kept as 1.
Keywords:quantum optics  quantum entanglement  binomial optical field  negative eigenvalue  
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