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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Quantum phase properties of two-mode Jaynes-Cummings model for Schrodinger-cat states: interference and entanglement
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Quantum phase properties of two-mode Jaynes-Cummings model for Schrodinger-cat states: interference and entanglement

机译:Schrodinger-cat态的两模Jaynes-Cummings模型的量子相位特性:干涉和纠缠

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In this paper, we investigate the quantum phase properties for the coherent superposition states (Schrodinger-cat states) for two-mode multiphoton Jaynes-Cummings model in the framework of the Pegg-Barnett formalism. We also demonstrate the behavior of the Wigner (W) function at the phase space origin. We obtain many interesting results such as the existence of a clear relationship between the revival-collapse phenomenon occurring in the atomic inversion (as well as in the evolution of the W function) and the behavior of the phase distribution of both the single-mode and two-mode cases. Furthermore, we find that the phase variances of the single-mode case can exhibit revival-collapse phenomenon about the long-time behavior. We show that such behavior occurs for interaction time several times smaller than that of the single-mode Jaynes-Cummings model.
机译:在本文中,我们研究了在Pegg-Barnett形式主义框架下双模多光子Jaynes-Cummings模型的相干叠加态(薛定inger-猫态)的量子相位特性。我们还展示了维格纳(W)函数在相空间起点处的行为。我们获得了许多有趣的结果,例如原子反转(以及W函数的演化)中发生的复兴崩溃现象与单模态和单模态的相分布行为之间存在明确的关系。两种模式的情况。此外,我们发现单模情况下的相位方差可以表现出关于长期行为的复兴崩溃现象。我们表明,这种行为的发生时间比单模Jaynes-Cummings模型的交互时间小几倍。

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