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Magic-Angle Twisted Bilayer Graphene as a Topological Heavy Fermion Problem

发布时间:2023-12-25

讲座论坛 期数 物理学系学术讲座
主题 Magic-Angle Twisted Bilayer Graphene as a Topological Heavy Fermion Problem 演讲者 宋志达 助理教授
时间 2023年12月27日(周三) 14:30 机构 北京大学
地点 海韵园物理楼552

Abstract:Magic-angle (θ=1.05°) twisted bilayer graphene (MATBG) has shown two seemingly contradictory characters: the localization and quantum-dot-like behavior in STM experiments, and delocalization in transport experiments. We construct a model, which naturally captures the two aspects, from the Bistritzer-MacDonald (BM) model in a first principle spirit. A set of local flat-band orbitals (f) centered at the AA-stacking regions are responsible to the localization. A set of extended topological semimetallic conduction bands (c), which are at small energetic separation from the local orbitals, are responsible to the delocalization and transport. The topological flat bands of the BM model appear as a result of the hybridization of f and c electrons. This model then provides a new perspective for the strong correlation physics, which is now described as strongly correlated f electrons coupled to nearly free c electrons—we hence name our model as the topological heavy fermion model. Using this model, we obtain the U(4) and U(4)×U(4) symmetries of Refs. [1–5] as well as the correlated insulator phases and their energies. Simple rules for the ground states and their Chern numbers are derived. Moreover, features such as the large dispersion of the charge ±1 excitations [2,6,7], and the minima of the charge gap at the ΓM point can now, for the first time, be understood both qualitatively and quantitatively in a simple physical picture. Our mapping opens the prospect of using heavy-fermion physics machinery to the superconducting physics of MATBG.

主讲人简介:宋志达,助理教授。于2018年在中国科学院物理研究所获得博士学位,之后在普林斯顿大学做博士后研究,21年入职北京大学物理学院量子材料中心工作至今。主要研究范围包括拓扑物态,转角体系等。