Local moments versus itinerant antiferromagnetism: Magnetic phase diagram and spectral properties of the anisotropic square lattice Hubbard model

M. Raczkowski, F. Assaad, M. Imada
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引用次数: 3

Abstract

Using a cluster extension of the dynamical mean-field theory (CDMFT) we map out the magnetic phase diagram of the anisotropic square lattice Hubbard model with nearest-neighbor intrachain $t$ and interchain $t_{\perp}$ hopping amplitudes at half-filling. A fixed value of the next-nearest-neighbor hopping $t'=-t_{\perp}/2$ removes the nesting property of the Fermi surface and stabilizes a paramagnetic metal phase in the weak-coupling regime. In the isotropic and moderately anisotropic regions, a growing spin entropy in the metal phase is quenched out at a critical interaction strength by the onset of long-range antiferromagnetic (AF) order of preformed local moments. It gives rise to a first-order metal-insulator transition consistent with the Mott-Heisenberg picture. In contrast, a strongly anisotropic regime $t_{\perp}/t\lesssim 0.3$ displays a quantum critical behavior related to the continuous transition between an AF metal phase and the AF insulator. Hence, within the present framework of CDMFT, the opening of the charge gap is magnetically driven as advocated in the Slater picture. We also discuss how the lattice-anisotropy-induced evolution of the electronic structure on a metallic side of the phase diagram is tied to the emergence of quantum criticality.
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局部矩与流动反铁磁性:各向异性方晶格Hubbard模型的磁相图和光谱特性
利用动态平均场理论(CDMFT)的聚类扩展,我们绘制了半填充时具有最近邻链内$t$和链间$t_{\perp}$跳幅的各向异性方晶格Hubbard模型的磁相图。下近邻跳变$t'=-t_{\perp}/2$的固定值消除了费米表面的嵌套特性,并稳定了弱耦合状态下的顺磁性金属相。在各向同性和中等各向异性区域,金属相中不断增长的自旋熵在一个临界相互作用强度下被预先形成的长程反铁磁(AF)阶矩的开始淬灭。它产生了与莫特-海森堡图一致的一阶金属-绝缘体跃迁。相反,强各向异性体系$t_{\perp}/t\lesssim 0.3$显示出与AF金属相和AF绝缘体之间连续转变相关的量子临界行为。因此,在CDMFT的现有框架内,电荷隙的打开是磁驱动的,正如斯莱特图所提倡的那样。我们还讨论了晶格各向异性诱导的相图金属侧电子结构的演化如何与量子临界的出现联系在一起。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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