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Quantum Phase and Field Purification for Quantum System in Coherent States Based on Generalized Heisenberg Algebra

机译:基于广义海森堡代数的相干态量子系统的量子相和场纯化

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摘要

In this paper, we consider the interaction between the two-level atom and the electromagnetic field modes initially prepared in coherent states associated with the generalized Heisenberg algebra (GHA). We investigate the dynamical behavior of the field purity, Pancharatnam phase, and atomic-population inversion. Based on the GHA, we study the statistical properties of the field state through the evolution of the Mandel parameter and examine the effects of the initial atomic state setting and the number of transiting photons. The results show that the GHA-coherent-state strength has the potential to affect the time evolution of the field purification, the Pancharatnam phase, and the Mandel parameter.
机译:在本文中,我们考虑了二级原子与最初在与广义Heisenberg代数(GHA)相关的相干态中准备的电磁场模式之间的相互作用。我们研究场纯度,Pancharatnam相和原子人口反演的动力学行为。基于GHA,我们通过Mandel参数的演化研究了场态的统计性质,并研究了初始原子态设置和传输光子数量的影响。结果表明,GHA相干态强度可能会影响场纯化,Pancharatnam相和Mandel参数的时间演变。

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