论文标题
大型Moiré单位细胞的功能重归其化组
Functional renormalization group for a large moiré unit cell
论文作者
论文摘要
二维材料的层相对于彼此的扭曲角度排列,导致带有强烈改变的带结构的扩大晶胞,为新颖和工程的多体基地状态提供了新的领域。为了探索这些方法,重新归一化的组方法是一种适当的灵活工具,考虑了竞争趋势的相互影响。在这里,我们表明,在合理的,非平凡的近似值中,可以使用更简单的二维系统已知的功能性重归其化组,可用于具有10.000多个频段以上的大型单元Moiré超级晶格,这补救了需要对几个乐队和/或有效连续性的有效低迷理论采用AD综合限制。这提供了关于原子量表的描述,从而使一个人可以吸收有关模型参数的可用ab-initio信息,从而借出了分析更具体的定量特征。对于扭曲的双层石墨烯模型,我们根据频带填充和相互作用范围探索领先的排序趋势。结果表明,不同磁性的基态在莫伊尔单位细胞内的电荷调制之间存在微妙的平衡,以实现足够的非局部排斥相互作用。
Layers of two-dimensional materials arranged at a twist angle with respect to each other lead to enlarged unit cells with potentially strongly altered band structures, offering a new arena for novel and engineered many-body ground states. For the exploration of these, renormalization group methods are an appropriate, flexible tool that take into account the mutual influence of competing tendencies. Here we show that, within reasonable, non-trivial approximations, the functional renormalization group known from simpler two-dimensional systems can be employed for the large-unit cell moiré superlattices with more than 10.000 bands, remedying the need to employ ad hoc restrictions to effective low-energy theories of a few bands and/or effective continuum theories. This provides a description on the atomic scale, allowing one to absorb available ab-initio information on the model parameters and therefore lending the analysis a more concrete quantitative character. For the case of twisted bilayer graphene models, we explore the leading ordering tendencies depending on the band filling and the range of interactions. The results indicate a delicate balance between distinct magnetically ordered ground states, as well as the occurrence of a charge modulation within the moiré unit cell for sufficiently non-local repulsive interaction.