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Recent Developments in Non-Fermi Liquid Theory
Annual Review of Condensed Matter Physics ( IF 22.6 ) Pub Date : 2018-03-12 00:00:00 , DOI: 10.1146/annurev-conmatphys-031016-025531
Sung-Sik Lee 1
Affiliation  

Non-Fermi liquids are unconventional metals whose physical properties deviate qualitatively from those of noninteracting fermions due to strong quantum fluctuations near Fermi surfaces. They arise when metals are subject to singular interactions mediated by soft collective modes. In the absence of well-defined quasiparticles, universal physics of non-Fermi liquids is captured by interacting field theories which replace Landau Fermi liquid theory. However, it has been difficult to understand their universal low-energy physics due to a lack of theoretical methods that take into account strong quantum fluctuations in the presence of abundant low-energy degrees of freedom. In this review, we discuss two approaches that have been recently developed for non-Fermi liquid theory with emphasis on two space dimensions. The first is a perturbative scheme based on a dimensional regularization, which achieves a controlled access to the low-energy physics by tuning the codimension of Fermi surface. The second is a nonperturbative approach which treats the interaction ahead of the kinetic term through a non-Gaussian scaling called interaction-driven scaling. Examples of strongly coupled non-Fermi liquids amenable to exact treatments through the interaction-driven scaling are discussed.

中文翻译:


非费米液体理论的最新发展

非费米液体是非常规金属,由于费米表面附近的强烈量子涨落,其物理性质与非相互作用的费米性质发生质变。它们在金属受到软集体模式介导的奇异相互作用时产生。在没有明确定义的准粒子的情况下,非费米液体的普适物理学是通过相互作用的场论来捕获的,这些场论取代了兰道·费米液体理论。但是,由于缺乏在大量低能自由度存在的情况下将强量子波动考虑在内的理论方法,因此很难理解它们的普遍低能物理学。在这篇综述中,我们讨论了针对非费米液体理论最近开发的两种方法,重点是两个空间维度。第一种是基于尺寸正则化的摄动方案,该方案通过调整费米表面的维数来实现对低能物理的受控访问。第二种是非摄动方法,它通过称为相互作用驱动标定的非高斯标度来处理动力学项之前的相互作用。讨论了通过相互作用驱动的结垢可进行精确处理的强耦合非费米液体的实例。

更新日期:2018-03-12
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