中国物理B ›› 2007, Vol. 16 ›› Issue (12): 3685-3691.doi: 10.1088/1009-1963/16/12/022
周并举1, 刘明伟1, 李寿存1, 刘小娟2
Liu Xiao-Juan(刘小娟)a)b)†, Zhou Bing-Ju(周并举)a), Liu Ming-Wei (刘明伟)a), and Li Shou-Cun(李寿存)a)
摘要: We investigate the preparation and the control of entangled states in a system with the two-mode coherent fields interacting with a moving two-level atom via the two-photon transition. We discuss entanglement properties between the two-mode coherent fields and a moving two-level atom by using the quantum reduced entropy, and those between the two-mode coherent fields by using the quantum relative entropy. In addition, we examine the influences of the atomic motion and field-mode structure parameter $p$ on the quantum entanglement of the system. Our results show that the period and the duration of the prepared maximal atom-field entangled states and the frequency of maximal two-mode field entangled states can be controlled, and that a sustained entangled state of the two-mode field, which is independent of atomic motion and the evolution time, can be obtained, by choosing appropriately the parameters of atomic motion, field-mode structure, initial state and interaction time of the system.
中图分类号: (Quantum state engineering and measurements)