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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Small polaron formation in many-particle states of the Hubbard-Holstein model: The one-dimensional case
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Small polaron formation in many-particle states of the Hubbard-Holstein model: The one-dimensional case

机译:Hubbard-Holstein模型的多粒子状态下的小极化子形成:一维情况

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摘要

We investigate polaron formation in a many-electron system in the presence of a local repulsion sufficiently strong to prevent local-bipolaron formation. Specifically, we consider a Hubbard-Holstein model of interacting electrons coupled to dispersionless phonons of frequency #omega#_0. Numerically solving the model in a small one-dimensional cluster, we find that in the nearly adiabatic case #omega#_0 < t, the necessary and sufficient condition for the polaronic regime to occur is that the energy gain in the atomic (i.e., extremely localized) regime #epsilon#_(pol) overcomes the energy of the purely electronic system #epsilon#_(el). In the antiadiabatic case, #omega#_0 > t, polaron formation is instead driven by the condition of a large ionic displacement g/#omega#_0 > 1 (g being the electron-phonon coupling). Dynamical properties of the model in the weak and moderately strong coupling regimes are also analyzed.
机译:我们研究了在存在足够强的局部排斥力以阻止局部双极化子形成的情况下,在多电子系统中极化子的形成。具体来说,我们考虑耦合电子到频率为#omega#_0的无色散声子的相互作用电子的Hubbard-Holstein模型。在一个小的一维簇中通过数值求解模型,我们发现在接近绝热的情况下#omega#_0 1(g是电子-声子耦合)的条件驱动的。还分析了模型在弱和中强耦合状态下的动力学特性。

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