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Single-atom entropy squeezing for two two-level atoms interacting with a single-mode radiation field

机译:两个与单模辐射场相互作用的两个二级原子的单原子熵压缩

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摘要

In this paper we consider a system of two two-level atoms interacting with a single-mode quantized electromagnetic field in a lossless resonant cavity via l-photon-transition mechanism. The field and the atoms are initially prepared in the coherent state and the excited atomic states, respectively. For this system we investigate the entropy squeezing, the atomic variances, the von Neumann entropy and the atomic inversions for the single-atom case. Also we comment on the relationship between spin squeezing and linear entropy. We show that the amounts of the nonclassical effects exhibited in the entropy squeezing for the present system are less than those produced by the standard Jaynes-Cummings model. The entropy squeezing can give information on the corresponding von Neumann entropy. Also the nonclassical effects obtained from the asymmetric atoms are greater than those obtained from the symmetric ones. Finally, the entropy squeezing gives better information than the atomic variances only for the asymmetric atoms.
机译:在本文中,我们考虑通过l光子跃迁机制在无损谐振腔中与两个单能级原子与单模量化电磁场相互作用的系统。最初,场和原子分别以相干态和激发态准备。对于该系统,我们研究了单原子情况下的熵压缩,原子方差,冯·诺依曼熵和原子反演。我们还评论了自旋压缩和线性熵之间的关系。我们表明,在本系统的熵压缩中表现出的非经典效应的数量少于标准Jaynes-Cummings模型产生的数量。熵压缩可以给出有关相应的冯·诺依曼熵的信息。从不对称原子获得的非经典效应也比从对称原子获得的非经典效应更大。最后,与仅针对非对称原子的原子方差相比,熵压缩所提供的信息更好。

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