论文标题

来自快速颗粒孔散射的不良金属行为的最小一维模型

Minimal one-dimensional model of bad metal behavior from fast particle-hole scattering

论文作者

Wang, Yan-Qi, Rausch, Roman, Karrasch, Christoph, Moore, Joel E.

论文摘要

在两个空间维度(2D)中,线性分散电子和孔激发的强烈相互作用的等离子体可以通过相对论流体动力学捕获,并与其他量子关键系统共享许多通用特征。我们提出了一个一维(1D)模型,以捕获2D Dirac流体的关键方面,同时包括晶格效应并适合非扰动计算。当相互作用添加到类似狄拉克的1D分散液中而没有打开间隙的情况下,我们表明,这种无关紧要的相互作用能够保留Fermi-liquil样的准粒子特征,同时通过粒子孔的激发在粒子孔之间放松零孔电荷电流,从而通过机械性care care care care care caremetib care care,从而导致电阻率在电阻中,从而导致电阻率是线性的。我们进一步提供了一个微观晶格模型,并通过密度 - 矩阵重新归一化组(DMRG)模拟获得数值结果,该模拟支持上述物理图片。由于实验中不良金属的无处不在,因此在强耦合下如此快速放松的局限性引起了人们的关注。

A strongly interacting plasma of linearly dispersing electron and hole excitations in two spatial dimensions (2D), also known as a Dirac fluid, can be captured by relativistic hydrodynamics and shares many universal features with other quantum critical systems. We propose a one-dimensional (1D) model to capture key aspects of the 2D Dirac fluid while including lattice effects and being amenable to non-perturbative computation. When interactions are added to the Dirac-like 1D dispersion without opening a gap, we show that this kind of irrelevant interaction is able to preserve Fermi-liquid-like quasi-particle features while relaxing a zero-momentum charge current via collisions between particle-hole excitations, leading to resistivity that is linear in temperature via a mechanism previously discussed for large-diameter metallic carbon nanotubes. We further provide a microscopic lattice model and obtain numerical results via density-matrix renormalization group (DMRG) simulations, which support the above physical picture. The limits on such fast relaxation at strong coupling are of considerable interest because of the ubiquity of bad metals in experiments.

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