论文标题

部分可观测时空混沌系统的无模型预测

Entanglement Between Stochastic Atomic Motion and Three-Level Atom

论文作者

Salah, Ahmed, El-Sayed, M. A., Wahab, N. H. Abdel

论文摘要

在本文中,当考虑到原子运动时,我们有兴趣研究熵和动态纠缠与单型腔场相互作用之间的动态纠缠。通过使用Schrödinger方程来为特定的初始条件使用Schrödinger方程给出一个精确的波函数分析解决方案。该系统的现场熵在非共鸣案例中进行了研究。检查了引人入胜的参数和原子运动对纠缠程度的影响。我们表明,引人入胜的参数和原子运动在von Neumann熵和原子种群的进化中起着重要作用。最后,得出结论和某些功能。

In this paper, we are interested in studying entropy and dynamics entanglement between a single time dependent three-level atom interacting with one-mode cavity field when the atomic motion is taken into account. An exact analytical solution for the wave function is given by using Schrödinger equation for a specific initial condition. The field entropy of this system is investigated in the non-resonant case. The influences of the detuning parameters and atomic motion on the entanglement degree are examined. We show that both of the detuning parameters and atomic motion play important roles in the evolution of von Neumann entropy and atomic populations. Finally, conclusion and some features are given.

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