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机构地区:[1]Physics and Information Engineering College,Luoyang Normal College [2]Key Laboratory of Low-Dimensional Quantum Structures and Quantum Control of Ministry of Education,and Physics and Information Science College,Hunan Normal University
出 处:《Chinese Physics B》2010年第7期53-58,共6页中国物理B(英文版)
基 金:supported by the Young Scientists Fund of the National Natural Science Foundation of China (Grant No. 10905028);the Natural Science Foundation of Hunan Province of China (Grant No. 07JJ3013);the Program for Science and Technology Department of Henan Province of China (Grant No. 102300410050);the Foundation of Hunan Provincial Education Department of China (Grant No. 06A038)
摘 要:Considering a quantum model consisting of two effective two-level atoms and a single-mode cavity, this paper investigates the entanglement dynamics between the two atoms, and studies the effect of the Stark shift on the entanglement. The results show that, on the one hand the atom-atom entanglement evolves periodically with time and the periods are affected by the Stark shift; on the other hand, the two atoms are not disentangled at any time when the Stark shift is considered, and for large values of the Stark shift parameter, the two atoms can remain in a stationary entangled state. In addition, for the initially partially entangled atomic state, the atom-atom entanglement can be greatly enhanced due to the presence of Stark shift. These properties show that the Stark shift can be used to control entanglement between two atoms.Considering a quantum model consisting of two effective two-level atoms and a single-mode cavity, this paper investigates the entanglement dynamics between the two atoms, and studies the effect of the Stark shift on the entanglement. The results show that, on the one hand the atom-atom entanglement evolves periodically with time and the periods are affected by the Stark shift; on the other hand, the two atoms are not disentangled at any time when the Stark shift is considered, and for large values of the Stark shift parameter, the two atoms can remain in a stationary entangled state. In addition, for the initially partially entangled atomic state, the atom-atom entanglement can be greatly enhanced due to the presence of Stark shift. These properties show that the Stark shift can be used to control entanglement between two atoms.
关 键 词:ENTANGLEMENT Stark shift CONTROL
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