相关系统中光激发的图解研究

O. Simard, S. Takayoshi, P. Werner
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引用次数: 7

摘要

光学电导率包含了相关电子系统性质的相关信息。在无限维中,动态平均场理论变得精确,顶点修正可以忽略,电导率由粒子孔气泡计算。一个有趣的问题涉及到有限维系统中最相关的顶点修正的性质和效果。最近的一项数值研究表明,波向量{\pi}的有序不稳定性附近的主导顶点校正来自于垂直阶梯,类似于Maki-Thompson图。由于这个阶梯图的RPA版本,称为{\pi}-ton,可以很容易地评估,这表明一个简单的程序,将反铁磁或电荷密度波波动纳入光学电导率和相关磁化率的动态平均场估计中。我们在考虑{\pi}-ton和{\pi}-ton的双阶梯扩展的半填充Hubbard模型上实现了这个过程,并揭示了这些顶点校正的谱特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diagrammatic study of optical excitations in correlated systems
The optical conductivity contains relevant information on the properties of correlated electron systems. In infinite dimensions, where dynamical mean field theory becomes exact, vertex corrections can be neglected and the conductivity computed from particle-hole bubbles. An interesting question concerns the nature and effect of the most relevant vertex corrections in finite-dimensional systems. A recent numerical study showed that the dominant vertex correction near an ordering instability with wave vector {\pi} comes from a vertical ladder, analogous to the Maki-Thompson diagram. Since the RPA version of this ladder diagram, dubbed {\pi}-ton, can be easily evaluated, this suggests a simple procedure for incorporating antiferromagnetic or charge density wave fluctuations into dynamical mean field estimates of the optical conductivity and related susceptibilities. We implement this procedure for the half-filled Hubbard model, considering the {\pi}-ton and a double-ladder extension of the {\pi}-ton, and reveal the spectral signatures of these vertex corrections.
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