Antiferromagnetic fluctuations in the one-dimensional Hubbard model

V. Janiš, A. Klíč, Jiawei Yan
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引用次数: 1

Abstract

We study the low-temperature critical behavior of the one-dimensional Hubbard model near half filling caused by enhanced antiferromagnetic fluctuations. We use a mean-field-type approximation with a two-particle self-consistency renormalizing the bare interaction. It allows us to control a transition from high to low temperatures as well as from weak to strong-coupling. We show that there is a crossover temperature $T_{0}= t\exp\{-1/U\rho(0)\}$ for arbitrary interaction $U>0$ and the bare density of states at the Fermi energy $\rho(0)>0$. The solution at lower temperatures goes over to strong coupling and approaches a quantum critical point with the diverging staggered susceptibility and a gap in the excitation spectrum at zero temperature.
一维哈伯德模型中的反铁磁波动
研究了由增强的反铁磁涨落引起的一维Hubbard模型在半填充附近的低温临界行为。我们使用了一种平均场型近似,具有双粒子自洽性,使裸相互作用重新规范化。它允许我们控制从高温到低温以及从弱耦合到强耦合的转变。我们证明了任意相互作用$U>0$和在费米能量$\rho(0)>0$处的裸态密度存在交叉温度$T_{0}= t\exp\{-1/U\rho(0)\}$。在较低温度下,溶液进入强耦合状态,接近零温度下具有发散的交错磁化率和激发谱间隙的量子临界点。
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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