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Quantum correlations between each qubit in a two-atom system and the environment in terms of interatomic distance

机译:根据原子间距离,双原子系统中每个量子位与环境之间的量子相关性

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The quantum correlations between a qubit and its environment are described quantitatively in terms of interatomic distance. Specifically, considering a realistic system of two two-level atoms and taking into account the dipole-dipole interaction and collective damping, the quantum entanglement and quantum discord are investigated during the dissipative process as functions of the interatomic distance. For atoms that are initially maximally entangled, it turns out that there is a critical distance at which each atom is maximally quantum correlated with its environment. Counterintuitively, the approach of the two atoms can maximize the entanglement between each one and the environment and, even at the same distance, minimize the loss of entanglement between the pair.
机译:量子位与其环境之间的量子相关性是根据原子间距离定量描述的。具体而言,考虑到一个由两个两能级原子组成的现实系统,并考虑了偶极-偶极相互作用和集体阻尼,在耗散过程中研究了量子纠缠和量子不和谐作为原子间距离的函数。对于最初最大程度地纠缠的原子,事实证明每个原子与其周围的环境之间存在最大的量子距离。与直觉相反,两个原子的接近可使每个人与环境之间的纠缠最大化,并且即使在相同的距离处,也使对之间的纠缠损失最小。

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