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Quantum entanglement in the system of a moving Ⅴ-type three-level atom interacting with the SU(1,1)-related coherent fields

机译:移动的Ⅴ型三能级原子与SU(1,1)相关相干场相互作用的系统中的量子纠缠

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摘要

In a system with a moving Ⅴ-type three-level atom interacting with the SU(1,1)-related coherent fields, we investigate the entanglement between the moving three-level atom and the SU(1,1)-related coherent fields by using the quantum-reduced entropy, and that between the SU(1,1)-related coherent fields by using the quantum relative entropy of entanglement. It is shown that the two kinds of entanglement are dependent on the atomic motion and exhibit the periodic evolution with a period of 2π/p. The maximal atom—field qutrit entanglement state can be prepared, and the entanglement preservation of the SU(1,1)-related coherent fields can be realized in the interacting process via the appropriate selection of system parameters and interaction time.
机译:在具有移动的Ⅴ型三能级原子与SU(1,1)相关的相干场相互作用的系统中,我们研究了移动的三能级原子与SU(1,1)相关的相干场之间的纠缠通过使用量子减少的熵,以及通过使用纠缠的量子相对熵,在SU(1,1)相关相干场之间进行计算。结果表明,两种纠缠都依赖于原子的运动,并且呈现出周期为2π/ p的周期性演化。可以准备最大的原子场量子态纠缠态,并且通过适当选择系统参数和相互作用时间,可以在相互作用过程中实现SU(1,1)相关相干场的纠缠保留。

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