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Two-level atom and quantum system entanglement and squeezing with and without classical field and damping effects

机译:两级原子和量子系统纠缠和挤压,无古典场和阻尼效果

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摘要

In this article, we study the entropy squeezing and the nonlocal correlation between a nonlinear quantum system initially in the BGS (Barut-Girardello state) and 2LA (two-level atom). The numerical solution is used for solving the differential equations to obtain the density matrix. The relation between the atomic inversion, nonlocal correlation measured by the negativity and entropy are discussed. The effective of classical field and damping on the dynamical properties of the entanglement and entropy squeezing is examined. The results are shown that a high amount of classical field due to the entanglement reached to minimum values. Finally the proposed quantum system being more resistant to the damping effect in the absence of classical field than the presence of classical field.
机译:在本文中,我们在最初在BGS(Barut-Girardello状态)和2LA(双层原子)中研究非线性量子系统之间的熵挤压和非局部相关性。 数值溶液用于求解微分方程以获得密度矩阵。 讨论了通过消极性和熵测量的原子反转,非局部相关性之间的关系。 检查了经典场的有效和阻尼对缠结和熵挤压的动态特性。 结果表明,由于缠结达到最小值,高量的经典领域。 最后,在没有经典领域的情况下,所提出的量子系统在没有经典领域的情况下更耐受阻尼效应。

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