论文标题

掺杂哈伯德模型中伪gap的起源和命运

Origin and fate of the pseudogap in the doped Hubbard model

论文作者

Simkovic, Fedor, Rossi, Riccardo, Georges, Antoine, Ferrero, Michel

论文摘要

我们使用受控的图蒙特卡洛计算在有限温度下研究了掺杂的二维Hubbard模型,允许在无限大小的极限中计算光谱特性,并且至关重要的是,具有任意动量分辨率。我们表明,发现了三个不同的方案是掺杂和相互作用强度的函数,对应于弱相关的金属,其特性与非相互作用系统的属性相关,一种相关的金属,具有强烈相互作用效应的相关金属,包括费米表面的重塑,以及在较低的兴奋剂中,在较低的兴奋剂中,它们会兴奋地造型,而pseudogap sendime则是pseudogap contime的pseudogap sentime。我们研究导致假单胞菌的物理机制,并表明当磁相关长度较大并且在较短时以强耦合时,它在弱耦合下形成。在这两种情况下,我们都表明,可以修改自旋 - 裂开理论,以说明自我能力的非本地成分的行为。我们讨论了伪gap的命运,因为温度为零,并表明,这种政权精确地推断了基于基态方法的有序条带相。有限温度和地面结果之间的这种握手显着提高了掺杂哈伯德模型物理学的综合图片。

We investigate the doped two-dimensional Hubbard model at finite temperature using controlled diagrammatic Monte Carlo calculations allowing for the computation of spectral properties in the infinite-size limit and, crucially, with arbitrary momentum resolution. We show that three distinct regimes are found as a function of doping and interaction strength, corresponding to a weakly correlated metal with properties close to those of the non-interacting system, a correlated metal with strong interaction effects including a reshaping of the Fermi surface, and a pseudogap regime at low doping in which quasiparticle excitations are selectively destroyed near the antinodal regions of momentum space. We study the physical mechanism leading to the pseudogap and show that it forms both at weak coupling when the magnetic correlation length is large and at strong coupling when it is shorter. In both cases, we show that spin-fluctuation theory can be modified in order to account for the behavior of the non-local component of the self-energy. We discuss the fate of the pseudogap as temperature goes to zero and show that, remarkably, this regime extrapolates precisely to the ordered stripe phase found by ground-state methods. This handshake between finite temperature and ground-state results significantly advances the elaboration of a comprehensive picture of the physics of the doped Hubbard model.

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