两腿阶梯模型中的准平带物理及其与魔角扭曲双层石墨烯的关系

Yixuan Huang, P. Hosur, H. Pal
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引用次数: 5

摘要

本文研究了一个由通量连接的两条腿阶梯模型的单粒子和多粒子性质,两条腿由空间变化项耦合。虽然先验地与扭曲双层石墨烯(TBG)无关,但该模型具有惊人的相似性:出现了与魔角TBG相似的准平坦低能带。我们利用密度矩阵重整化群研究了模型中粒子间相互作用的影响,发现当带为准平坦时,基态为铁磁莫特绝缘子。当能带变得更加色散时,系统经历了铁磁性到反铁磁性的转变。我们讨论了我们的模型如何不仅与TBG中的魔角物理相关,而且与一维相关和磁性的更大背景相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quasi-flat-band physics in a two-leg ladder model and its relation to magic-angle twisted bilayer graphene
We study the single- and many-particle properties of a two-leg ladder model threaded by a flux with the legs coupled by a spatially varying term. Although a priori unrelated to twisted bilayer graphene (TBG), the model is found to have striking similarities: a quasi-flat low-energy band emerges with characteristics similar to that of magic angle TBG. We study the effect of interparticle interaction in our model using the density matrix renormalization group and find that when the band is quasi-flat, the ground state is a ferromagnetic Mott insulator. As the band becomes more dispersive, the system undergoes a ferromagnetic to antiferromagnetic transition. We discuss how our model is relevant not only to magic-angle physics in TBG, but also in the larger context of one-dimensional correlations and magnetism.
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