The interaction between a Three-Level Atom and Four Systems of N-Two Level Atoms

A. Makram-Allah, M. Ahmed, D. Abo-Kahla
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引用次数: 2

Abstract

We have four systems, each of them contains N-atoms, and each atom of them consists of two levels, and all of them interact with an atom consisting of three levels. Moreover, the atom is also related to the systems by coupling parameters that are time-dependent. By considering particular conditions, the exact solution for the wave function is realized. Then we survey the atomic population inversion in addition to the normalized correlation functions. We examine the influence of many parameters on the previous statistical aspects. We deduce from the conclusions that the behavior of the correlation function is affected by the existence of the time-dependent coupling parameters between spins. We prove that changing the values of the coupling parameters between spins λk, the parameters e, and the quantum numbers Nγ enables us to control the correlated behavior in addition to the atomic population. So, we can control this model through these parameters.
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一个三能级原子与四个n -二能级原子体系之间的相互作用
我们有四个系统,每个系统包含n个原子,每个原子由两个能级组成,它们都与一个由三个能级组成的原子相互作用。此外,原子还通过与时间相关的耦合参数与系统相关。通过考虑特殊条件,实现了波函数的精确解。然后,除了归一化相关函数外,我们还研究了原子居数反演。我们检查了许多参数对以前统计方面的影响。我们从结论中推断出相关函数的行为受到自旋间随时间耦合参数存在的影响。我们证明了改变自旋λk、参数e和量子数Nγ之间的耦合参数值使我们能够控制原子居群之外的相关行为。所以,我们可以通过这些参数来控制这个模型。
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