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How to read between the lines of electronic spectra: the diagnostics of fluctuations in strongly correlated electron systems

机译:如何在电子谱之间读取:强烈相关电子系统中波动的诊断

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摘要

While calculations and measurements of single-particle spectral properties often offer the most direct route to study correlated electron systems, the underlying physics may remain quite elusive, if information at higher particle levels is not explicitly included. Here, we present a comprehensive overview of the different approaches which have been recently developed and applied to identify the dominant two-particle scattering processes controlling the shape of the one-particle spectral functions and, in some cases, of the physical response of the system. In particular, we will discuss the underlying general idea, the common threads and the specific peculiarities of all the proposed approaches. While all of them rely on a selective analysis of the Schwinger-Dyson (or the Bethe-Salpeter) equation, the methodological differences originate from the specific two-particle vertex functions to be computed and decomposed. Finally, we illustrate the potential strength of these methodologies by means of their applications the two-dimensional Hubbard model, and we provide an outlook over the future perspective and developments of this route for understanding the physics of correlated electrons.
机译:虽然单粒子光谱特性的计算和测量通常为研究相关电子系统提供了最直接的途径,但如果没有明确包括更高粒子水平的信息,基本物理可能仍然相当难以捉摸。在这里,我们对最近开发和应用的不同方法进行了全面概述,以确定控制单粒子光谱函数形状的主要双粒子散射过程,以及在某些情况下,系统的物理响应。特别是,我们将讨论所有建议方法的基本总体思路、共同思路和具体特点。虽然所有这些都依赖于对Schwinger-Dyson(或Bethe-Salpeter)方程的选择性分析,但方法上的差异源于要计算和分解的特定两粒子顶点函数。最后,我们通过二维哈伯德模型的应用说明了这些方法的潜在优势,并展望了这一途径在理解相关电子物理方面的未来前景和发展。

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