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Non-Drude universal scaling laws for the optical response of local Fermi liquids

机译:局部费米液体的光学响应的​​非德鲁德通用缩放定律

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摘要

We investigate the frequency and temperature dependence of the low-energy electron dynamics in a Landau Fermi liquid with a local self-energy. We show that the frequency and temperature dependencies of the optical conductivity obey universal scaling forms, for which explicit analytical expressions are obtained. For the optical conductivity and the associated memory function, we obtain a number of surprising features that differ qualitatively from the Drude model and are universal characteristics of a Fermi liquid. Different physical regimes of scaling are identified, with marked non-Drude features in the regime where hω ~ k_BT. These analytical results for the optical conductivity are compared to numerical calculations for the doped Hubbard model within dynamical mean-field theory. For the "universal" low-energy electrodynamics, we obtain perfect agreement between numerical calculations and analytical scaling laws. Both results show that the optical conductivity displays a non-Drude "foot," which could be easily mistaken as a signature of breakdown of the Fermi liquid, while it actually is a striking signature of its applicability. The aforementioned scaling laws provide a quantitative tool for the experimental identification and analysis of the Fermi-liquid state using optical spectroscopy, and a powerful method for the identification of alternative states of matter, when applicable.
机译:我们研究了具有局部自能的Landau Fermi液体中低能电子动力学的频率和温度依赖性。我们表明,光导率的频率和温度依赖性服从通用标度形式,为此获得了明确的分析表达式。对于光导率和相关的记忆功能,我们获得了许多令人惊讶的特征,这些特征在质量上与Drude模型不同,并且是费米液体的通用特征。确定了不同的物理尺度,其中hω〜k_BT具有明显的非德鲁德特征。将这些光导率的分析结果与动态均场理论中掺杂的Hubbard模型的数值计算进行了比较。对于“通用”低能量电动动力学,我们在数值计算和解析比例定律之间获得了完美的一致性。这两个结果都表明,光导率显示出非德鲁德的“脚”,很容易将其误认为是费米液体分解的标志,而实际上却是其适用性的显着标志。上述比例定律为使用光谱学对费米液态进行实验鉴定和分析提供了一种定量工具,并在适用时提供了一种用于鉴定物质替代态的有效方法。

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  • 来源
    《Physical review》 |2013年第11期|115109.1-115109.15|共15页
  • 作者单位

    Departement de Physique de la Matiere Condensee, Universite de Geneve, 24 quai Ernest-Ansermet, 1211 Geneve 4, Switzerland;

    College de France, 11 place Marcelin Berthelot, 75005 Paris, France Centre de Physique Theorique, Ecole Poly technique, CNRS, 91128 Palaiseau, France Jozef Stefan Institute, Jamova 39, Ljubljana, Slovenia;

    Department of Physics, Rutgers University, Piscataway, New Jersey 08854, USA;

    Jozef Stefan Institute, Jamova 39, Ljubljana, Slovenia;

    Departement de Physique de la Matiere Condensee, Universite de Geneve, 24 quai Ernest-Ansermet, 1211 Geneve 4, Switzerland;

    College de France, 11 place Marcelin Berthelot, 75005 Paris, France Centre de Physique Theorique, Ecole Poly technique, CNRS, 91128 Palaiseau, France Departement de Physique de la Matiere Condensee, Universite de Geneve, 24 quai Ernest-Ansermet, 1211 Geneve 4, Switzerland;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    theory, models, and numerical simulation; relaxation times and mean free paths;

    机译:理论;模型和数值模拟;松弛时间和平均自由程;

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