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首页> 外文期刊>The Journal of Chemical Physics >Intermolecular-interaction effects on quantum-phase dynamics of dimer systems interacting with a two-mode squeezed vacuum field
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Intermolecular-interaction effects on quantum-phase dynamics of dimer systems interacting with a two-mode squeezed vacuum field

机译:分子间相互作用对与双模压缩真空场相互作用的二聚体系统量子相动力学的影响

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We investigate the intermolecular-interaction (dipole-dipole interaction) effects on the quantum dynamics of dimer density matrices and photon-phase distributions using several dimer models with different intermolecular distances in the presence of a two-mode squeezed vacuum field. In this photon field, each mode is initially correlated and the reduced one-mode photon distribution is equivalent with that of a thermal field. For comparison, we perform parallel studies, in which the initial fields are two types of noncorrelated two-mode fields, i.e., a two-mode coherent field and a two-mode thermal field. It is found that although the two-mode squeezed vacuum field causes the random oscillations of dimer populations in the noninteracting dimer, the periodic oscillations like the collapse-revival behavior emerge as the intermolecular distance decreases (the intermolecular interaction increases). Similar and dissimilar features among quantum dynamics caused by these three types of fields are investigated by analyzing the dynamical behavior of two-mode Pegg-Barnett photon-phase distributions and off-diagonal dimer density matrices, which indicate the coherency between dimer states. In addition to the quantum statistical properties of initial photon field, the change in the degree of contribution between one- and two-photon processes caused by the intermolecular interaction is found to be important to determine these features. (C) 2002 American Institute of Physics. [References: 53]
机译:我们研究了分子间相互作用(偶极子-偶极子相互作用)对二聚体密度矩阵和光子相分布的量子动力学的影响,该模型使用的是具有双模压缩真空场的具有不同分子间距离的几种二聚体模型。在该光子场中,每个模式最初都相关,并且减少的单模光子分布与热场的分布等效。为了进行比较,我们进行了并行研究,其中初始场是两种类型的不相关的双模场,即双模相干场和双模热场。结果发现,尽管双模压缩真空场在非相互作用的二聚体中引起二聚体种群的随机振荡,但随着分子间距离的减小(分子间相互作用的增加),像崩塌-恢复行为之类的周期性振荡出现。通过分析两种模式的Pegg-Barnett光子相分布和非对角二聚体密度矩阵的动力学行为,研究了这三种类型的场引起的量子动力学之间的相似和相异特征,这表明了二聚体态之间的相干性。除了初始光子场的量子统计性质外,由分子间相互作用引起的单光子过程和双光子过程之间的贡献程度的变化对于确定这些特征也很重要。 (C)2002美国物理研究所。 [参考:53]

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