Abstract We investigate the entanglement in a system of two coupling atoms interacting with a single-mode field by means of quantum information entropy theory. The quantum entanglement between the two atoms and the coherent field is discussed by using the quantum reduced entropy, and the entanglement between the two coupling atoms is also investigated by using the quantum relative entropy. In addition, the influences of the atomic dipole--dipole interaction intensity and the average photon number of the coherent field on the degree of the entanglement is examined. The results show that the evolution of the degree of entanglement between the two atoms and the field is just opposite to that of the degree of entanglement between the two atoms. And the properties of the quantum entanglement in the system rely on the atomic dipole--dipole interaction and the average photon number of the coherent field.
Received: 30 June 2005
Revised: 22 May 2006
Accepted manuscript online:
Fund: Project supported by the
National Natural Science Foundation of China (Grant No 10374025).
Cite this article:
Jin Li-Juan(靳丽娟) and Fang Mao-Fa(方卯发) Entanglement in a system of two two-level atoms interacting with a single-mode field 2006 Chinese Physics 15 2012
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