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Effective field theory of an anomalous Hall metal from interband quantum fluctuations

机译:带内量子涨落对霍尔金属异常的有效场论

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摘要

We construct an effective field theory, a two-dimensional two-component metallic system described by a model with two Fermi surfaces ("pockets"). This model describes a translationally invariant metallic system with two types of fermions, each with its own Fermi surface, with forward scattering interactions. This model, in addition to the 0(2) rotational invariance, has a U(l) x U(l) symmetry of separate charge conservation for each Fermi surface. For sufficiently attractive interactions in the d-wave (quadrupolar) channel, this model has an interesting phase diagram that includes a spontaneously generated anomalous Hall metal phase. We derive the Landau-Ginzburg effective action of quadrupolar order parameter fields which enjoys an 0(2) x U(l) global symmetry associated to spatial isotropy and the internal U(l) relative phase symmetries, respectively. We show that the order parameter theory is dynamically local with a dynamical scaling of z = 2 and perform a one-loop renormalization group analysis of the Landau-Ginzburg theory. The electronic liquid crystal phases that result from spontaneous symmetry breaking are studied and we show the presence of Landau damped Nambu-Goldstone modes at low momenta that is a signature of non-Fermi-liquid behavior. Electromagnetic linear response is also analyzed in both the normal and symmetry broken phases from the point of view of the order parameter theory. The nature of the coupling of electromagnetism to the order parameter fields in the normal phase is non-minimal and decidedly contains a precursor to the anomalous Hall response in the form of a order-parameter-dependent Chern-Simons term in the effective action.
机译:我们构建了一个有效的场论,即由两个费米表面(“口袋”)模型描述的二维两组分金属系统。该模型描述了一种平移不变的金属系统,该系统具有两种类型的费米子,每种费米子都有自己的费米表面,并且具有正向散射相互作用。除0(2)旋转不变性外,该模型还具有每个费米表面独立的电荷守恒的U(l)x U(l)对称性。为了在d波(四极)通道中产生足够吸引人的相互作用,此模型具有有趣的相图,其中包括自发生成的异常霍尔金属相。我们推导了四极阶参数域的Landau-Ginzburg有效作用,该场分别具有与空间各向同性和内部U(l)相对相位对称相关的0(2)x U(l)全局对称性。我们证明了阶数参数理论是动态局部的,具有z = 2的动态缩放比例,并且对Landau-Ginzburg理论进行了单环重归一化组分析。研究了由于自发对称破坏而产生的电子液晶相,我们显示了在低矩下存在Landau阻尼Nambu-Goldstone模态,这是非费米液体行为的标志。从顺序参数理论的角度,还分析了正常和对称断相中的电磁线性响应。电磁与正相中的阶跃参数场耦合的性质是非最小的,并且在有效动作中绝对包含以阶跃参数相关的Chern-Simons项形式出现的霍尔异常响应。

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  • 来源
    《Physical Review. B, Condensed Matter》 |2017年第3期|035110.1-035110.28|共28页
  • 作者单位

    Department of Physics, and Institute for Condensed Matter Theory, University of Illinois at Urbana-Champaign, 1110 West Green Street, Urbana, Illinois 61801-3003, USA;

    Department of Physics, and Institute for Condensed Matter Theory, University of Illinois at Urbana-Champaign, 1110 West Green Street, Urbana, Illinois 61801-3003, USA;

    Department of Physics, and Institute for Condensed Matter Theory, University of Illinois at Urbana-Champaign, 1110 West Green Street, Urbana, Illinois 61801-3003, USA;

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