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Dynamics of Information Entropies of Atom-Field Entangled States Generated via the Jaynes-Cummings Model
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作者 r.pakniat M.K.Tavassoly M.H.Zandi 《Communications in Theoretical Physics》 SCIE CAS CSCD 2016年第3期266-272,共7页
In this paper we have studied the dynamical evolution of Shannon information entropies in position and momentum spaces for two classes of(nonstationary)atom-field entangled states,which are obtained via the JaynesCumm... In this paper we have studied the dynamical evolution of Shannon information entropies in position and momentum spaces for two classes of(nonstationary)atom-field entangled states,which are obtained via the JaynesCummings model and its generalization.We have focused on the interaction between two-and(1)-type three-level atoms with the single-mode quantized held.The three-dimensional plots of entropy densities in position and momentum spaces are presented versus corresponding coordinates and time,numerically.It is observed that for particular values of the parameters of the systems,the entropy squeezing in position space occurs.Finally,we have shown that the well-known BBM(Beckner,Bialynicki-Birola and Mycielsky)inequality,which is a stronger statement of the Heisenberg uncertainty relation,is properly satisfied. 展开更多
关键词 JAYNES-CUMMINGS模型 Shannon信息熵 原子纠缠态 动态生成 位置空间 动量空间 三能级原子 动态演化
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