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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Symmetry-protected non-Fermi liquids, kagome spin liquids, and the chiral Kondo lattice model
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Symmetry-protected non-Fermi liquids, kagome spin liquids, and the chiral Kondo lattice model

机译:受对称保护的非费米液体,kagome自旋液体和手性近藤晶格模型

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摘要

The theoretical description of non-Fermi liquids is among the most challenging questions in strongly correlated quantum matter. While there are many experimental candidates for such phases, few examples can be studied using controlled theoretical approaches. Here, we introduce a conceptual perspective to analytically describe the non-Fermi liquid physics of gapless spin liquids arising in a family of two- and three-dimensional kagome models. We first discuss a symmetry-protection mechanism that is responsible for the stability of the gapless phase. We then recast the two-dimensional kagome spin model as a chiral Kondo lattice model that can be tackled analytically using what is in a sense a generalization of coupled-wire constructions. We provide extensive numerical evidence for a gapless spin liquid in the two-dimensional kagome model and discuss generalizations to three dimensions.
机译:非费米液体的理论描述是强相关量子物质中最具挑战性的问题之一。尽管有很多此类阶段的实验候选对象,但使用受控理论方法可以研究的实例很少。在这里,我们引入一个概念性的观点来分析性地描述在二维和三维kagome模型族中产生的无间隙自旋液体的非费米液体物理学。我们首先讨论对称保护机制,该机制负责无间隙相的稳定性。然后,我们将二维kagome自旋模型重铸为手性Kondo晶格模型,可以使用耦合线构造的泛化来进行解析。我们为二维kagome模型中的无间隙自旋液体提供了广泛的数值证据,并讨论了对三个维度的概括。

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