Control and Transfer of Entanglement between Two Atoms Driven by Classical Fields under Dressed-State Representation |
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Authors: | Qing-Hong Liao Qi Zhang Juan Xu Qiu-Rong Yan Ye Liu An Chen |
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Institution: | Department of Electronic Information Engineering, Nanchang University, Nanchang 330031, China |
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Abstract: | We have studied the dynamics and transfer of the entanglement of the two identical atoms simultaneously interacting with vacuum field by employing the dressed-state representation. The two atoms are driven by classical fields. The influence of the initial entanglement degree of two atoms, the coupling strength between the atom and the classical field and the detuning between the atomic transition frequency and the frequency of classical field on the entanglement and atomic linear entropy is discussed. The initial entanglement of the two atoms can be transferred into the entanglement between the atom and cavity field when the dissipation is neglected. The maximally entangled state between the atoms and cavity field can be obtained under some certain conditions. The time of disentanglement of two atoms can be controlled and manipulated by adjusting the detuning and classical driving fields. Moreover, the larger the cavity decay rate is, the more quickly the entanglement of the two atoms decays. |
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Keywords: | concurrence entanglement dynamics classical field |
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