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扭曲电子学概论:无质量狄拉克费米子在扭曲双层石墨烯中通向摩尔纹图案和平带的旅程。

A primer on twistronics: a massless Dirac fermion's journey to moiré patterns and flat bands in twisted bilayer graphene.

机构信息

Department of Physics, IIT Delhi, Hauz Khas, New Delhi, India.

出版信息

J Phys Condens Matter. 2023 Feb 16;35(14). doi: 10.1088/1361-648X/acb984.

Abstract

The recent discovery of superconductivity in magic-angle twisted bilayer graphene (TBLG) has sparked a renewed interest in the strongly-correlated physics ofcarbons, in stark contrast to preliminary investigations which were dominated by the one-body physics of the massless Dirac fermions. We thus provide a self-contained, theoretical perspective of the journey of graphene from its single-particle physics-dominated regime to the strongly-correlated physics of the flat bands. Beginning from the origin of the Dirac points in condensed matter systems, we discuss the effect of the superlattice on the Fermi velocity and Van Hove singularities in graphene and how it leads naturally to investigations of the moiré pattern in van der Waals heterostructures exemplified by graphene-hexagonal boron-nitride and TBLG. Subsequently, we illuminate the origin of flat bands in TBLG at the magic angles by elaborating on a broad range of prominent theoretical works in a pedagogical way while linking them to available experimental support, where appropriate. We conclude by providing a list of topics in the study of the electronic properties of TBLG not covered by this review but may readily be approached with the help of this primer.

摘要

最近在魔角扭曲双层石墨烯(TBLG)中发现的超导性,重新激发了人们对碳的强关联物理的兴趣,与初步研究形成鲜明对比的是,这些研究主要由无质量狄拉克费米子的单粒子物理主导。因此,我们提供了一个自包含的、理论性的视角,描述了从石墨烯的单粒子物理主导的状态到平带的强关联物理的转变过程。从凝聚态系统中狄拉克点的起源开始,我们讨论了超晶格对石墨烯中费米速度和范霍夫奇点的影响,以及它如何自然而然地导致对范德瓦尔斯异质结构中莫尔图案的研究,以石墨烯-六方氮化硼和 TBLG 为例。随后,我们通过以一种教学的方式详细阐述一系列广泛的重要理论工作,阐明了在魔角 TBLG 中平带的起源,同时在适当的情况下将其与现有的实验支持联系起来。最后,我们提供了一个在研究 TBLG 的电子性质时未涵盖的主题列表,但借助这个入门指南,可以很容易地研究这些主题。

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