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Generation and nonclassicality of entangled states via the interaction of two three-level atoms with a quantized cavity field assisted by a driving external classical field

机译:通过两个三能级原子与外部驱动的经典场辅助的量子腔场的相互作用,产生纠缠态并产生非经典性

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The interaction of two identical three-level atoms of the types V, Xi and Lambda with a quantized cavity field as well as a driving external classical field is studied. Under two certain unitary transformations, the system is converted to a typical form of the Jaynes-Cummings model for two three-level atoms. The exact analytical solutions of the wave function for different considered atom-field systems are exactly obtained with the help of the Laplace transform technique, when the atoms are initially prepared in the topmost excited state and the quantized field is in a coherent state. In order to examine the nonclassicality features of the deduced states, the dynamics of the entanglement between subsystems is discussed via two ell-known measures, namely, von Neumann entropy of the reduced state and negativity. In addition, we pay attention to the temporal behavior of quantum statistics of the photons of the field and squeezing phenomenon. Meanwhile, the influence of the external classical field on the latter physical quantities is analyzed in detail. The results show that the mentioned quantities can be sensitively controlled via the external classical field. Also, numerical computations imply the fact that the nonclassicality features in.-type three-level atomic system is more visible than the other two configurations. In addition, it is shown that in the particular case of Lambda-type atomic system, the rank of the reduced density matrix of the three-level atoms is no larger than three, so that negativity fully captures the entanglement of this system and that such entanglement is distillable.
机译:研究了类型V,Xi和Lambda的两个相同的三能级原子与量子腔场以及外部驱动经典场的相互作用。在两个特定的单位变换下,系统将转换为两个三能级原子的Jaynes-Cummings模型的典型形式。当最初以最高激发态制备原子并且量子场处于相干态时,借助于拉普拉斯变换技术,可以精确地获得针对不同的考虑的原子场系统的波函​​数的精确解析解。为了检验推导态的非经典性特征,通过两种众所周知的方法,即还原态的冯·诺依曼熵和负性,讨论了子系统之间的纠缠动力学。另外,我们关注场光子的量子统计的时间行为和压缩现象。同时,详细分析了外部经典场对后者物理量的影响。结果表明,可以通过外部经典场灵敏地控制上述数量。而且,数值计算暗示了这样的事实,即三级原子体系的非经典性特征比其他两种构型更明显。此外,表明在Lambda型原子系统的特定情况下,三能级原子的密度降低矩阵的秩不大于3,因此负性完全捕获了该系统的纠缠,并且纠缠是可以蒸馏的。

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