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Entanglement in a system of two two-level atoms interacting with a single-mode field

机译:两个二能级原子与单模场相互作用的系统中的纠缠

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We investigate the entanglement in a system of two coupling atoms interacting with a single-mode field by means of quantum information entropy theory. The quantum entanglement between the two atoms and the coherent field is discussed by using the quantum reduced entropy, and the entanglement between the two coupling atoms is also investigated by using the quantum relative entropy. In addition, the influences of the atomic dipole-dipole interaction intensity and the average photon number of the coherent field on the degree of the entanglement is examined. The results show that the evolution of the degree of entanglement between the two atoms and the field is just opposite to that of the degree of entanglement between the two atoms. And the properties of the quantum entanglement in the system rely on the atomic dipole-dipole interaction and the average photon number of the coherent field.
机译:我们通过量子信息熵理论研究了两个耦合原子与单模场相互作用的系统中的纠缠。利用量子约化熵讨论了两个原子与相干场之间的量子纠缠,还利用量子相对熵研究了两个耦合原子之间的纠缠。此外,还研究了原子偶极-偶极相互作用强度和相干场的平均光子数对纠缠度的影响。结果表明,两个原子之间的纠缠度和场的演化与两个原子之间的纠缠度正好相反。系统中量子纠缠的性质取决于原子偶极子-偶极子相互作用和相干场的平均光子数。

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