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首页> 外文期刊>The Journal of Chemical Physics >Many-body Green's function theory for electron-phonon interactions: The Kadanoff-Baym approach to spectral properties of the Holstein dimer
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Many-body Green's function theory for electron-phonon interactions: The Kadanoff-Baym approach to spectral properties of the Holstein dimer

机译:电子-声子相互作用的多体格林函数理论:荷斯坦二聚体光谱特性的Kadanoff-Baym方法

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We present a Kadanoff-Baym formalism to study time-dependent phenomena for systems of interacting electrons and phonons in the framework of many-body perturbation theory. The formalism takes correctly into account effects of the initial preparation of an equilibrium state and allows for an explicit time-dependence of both the electronic and phononic degrees of freedom. The method is applied to investigate the charge neutral and non-neutral excitation spectra of a homogeneous, two-site, two-electron Holstein model. This is an extension of a previous study of the ground state properties in the Hartree (H), partially self-consistent Born (Gd) and fully self-consistent Born (GD) approximations published in Sakkinen et al. [J. Chem. Phys. 143, 234101 (2015)]. Here, the homogeneous ground state solution is shown to become unstable for a sufficiently strong interaction while a symmetry-broken ground state solution is shown to be stable in the Hartree approximation. Signatures of this instability are observed for the partially self-consistent Born approximation but are not found for the fully self-consistent Born approximation. By understanding the stability properties, we are able to study the linear response regime by calculating the density-density response function by time-propagation. This amounts to a solution of the Bethe-Salpeter equation with a sophisticated kernel. The results indicate that none of the approximations is able to describe the response function during or beyond the bipolaronic crossover for the parameters investigated. Overall, we provide an extensive discussion on when the approximations are valid and how they fail to describe the studied exact properties of the chosen model system. (C) 2015 AIP Publishing LLC.
机译:我们提出一种Kadanoff-Baym形式主义,以在多体摄动理论的框架内研究相互作用的电子和声子系统的时变现象。形式主义正确考虑了平衡态初始准备的影响,并允许电子自由度和声子自由度都具有明确的时间依赖性。该方法用于研究均质,两点,两电子荷斯坦模型的电荷中性和非中性激发光谱。这是先前发表在Sakkinen等人的Hartree(H),部分自洽Born(Gd)和完全自洽Born(GD)近似中的基态特性研究的扩展。 [J.化学物理143,234101(2015)]。在这里,均匀基态解对于足够强的相互作用变得不稳定,而对称破坏基态解在Hartree近似中稳定。对于部分自洽的Born近似,可以观察到这种不稳定性的迹象,而对于完全自洽的Born近似,则无法发现。通过了解稳定性能,我们可以通过时间传播来计算密度-密度响应函数,从而研究线性响应机制。这相当于具有复杂内核的Bethe-Salpeter方程的解。结果表明,没有一个近似值能够描述所研究参数在双极子交叉期间或之后的响应函数。总体而言,我们对近似值何时有效以及它们如何无法描述所选模型系统的精确特性进行了广泛的讨论。 (C)2015 AIP Publishing LLC。

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