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Tavis-Cummings模型下利用W态与GHZ态远程控制原子的布居差演化
引用本文:韩峰,满忠晓,夏云杰.Tavis-Cummings模型下利用W态与GHZ态远程控制原子的布居差演化[J].量子电子学报,2010,27(1):69-76.
作者姓名:韩峰  满忠晓  夏云杰
作者单位:1曲阜师范大学物理工程学院,山东曲阜,273165; 2济宁学院物理系, 山东曲阜,273155
基金项目:国家自然科学基金项目资助课题 
摘    要:考虑三个二能级原子(A、B和C)初始处于W纠缠态或GHZ纠缠态,让其中两原子A和B与相干态光场发生共振作用,经腔QED演化以后,对腔内原子进行Bell基测量,通过调节相干态光场的强度和原子间的偶极-偶极相互作用强度,控制腔外C原子的布居差演化。结果表明:选择不同的初态以及在同一初态下进行不同的测量,光场的强度和原子间偶极作用强度对腔外原子布居差的演化特性有着不同的影响,增大光场的强度和原子间的偶极相互作用强度,都能使腔外原子布居差的演化呈现出明显的崩塌-回复现象和Rabi频率增大及回复周期变长等特征。

关 键 词:量子光学  远程控制  Bell基测量  W态与GHZ态  布局差  Tavis-Cummings模型

Remote controlling for the evolution of atom's occupancy by using W and GHZ states in the Tavis-Cummings model
HAN Feng,MAN Zhong-xiao,XIA Yun-jie.Remote controlling for the evolution of atom's occupancy by using W and GHZ states in the Tavis-Cummings model[J].Chinese Journal of Quantum Electronics,2010,27(1):69-76.
Authors:HAN Feng  MAN Zhong-xiao  XIA Yun-jie
Affiliation:1 College of physics and engineering, Qufu Normal University, Qufu 273165,China; A 2 Department of Physics , Jining University, QuFu273155 China
Abstract:Considering that three two-level atoms A, B and C were initially prepared in W or GHZ entangled state and two of them, A and B, interacted resonantly with coherent state field, after cavity QED evolution, Bell-basis measurement was performed on the two atoms inside cavity, through modulating the intensity of the coherent field and the strength of dipole-dipole interaction between atoms, one can controlled the evolution of atom's occupancy of atom C outside cavity. The results show that the influence on the evolution properties of occupancy of atom C outside cavity is different under selecting different initial state and carrying out different measurement in the same initial state. As increasing the intensity of the coherent field and the strength of dipole-dipole interaction between atoms, the evolution of occupancy of atom C outside cavity can exhibit obviously the collapse-revival phenomenon and the characteristic of increasing of Rabi frequency and lengthening of revival period, etc.
Keywords:quantum optics  remote control  Bell measurements  W entangled state and GHZ entangled state  atom's occupancy  Tavis-Cummings model
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