论文标题
菱形三层石墨烯中的旋转和轨道金属磁性
Spin and Orbital Metallic Magnetism in Rhombohedral Trilayer Graphene
论文作者
论文摘要
我们提供了最近在ABC Trilayer石墨烯(ABC)中发现的金属破碎/山谷对称状态的完整理论解释,该状态受到大型横向位移场的扰动。我们的结论结合了来自ABC Trilayer石墨烯电子结构模型和平均场理论的见解,并以精确的磁振荡Fermi-Surface-Surface-Area测量为指导。我们得出的结论是,ABC Trilayer石墨烯的物理学是由动量空间冷凝的原理塑造的,当单粒子带暗示稀薄的环形Fermi海洋时,旋转/山谷风味对称性造成了费米表面的重建。我们发现一个大型外部费米表面封闭了多数味状态状态,一个或多个小孔状的费米表面封闭了主要负责列不明的少数族裔状态。较小的表面可以沿着货车蜜饯的奇异点旋转,也可以重建多个费米表面,而能量成本很小。我们建议后一种特性负责在载体密度/位移场图的某些区域实验中看到的量子振荡频率分数化。
We provide a complete theoretical interpretation of the metallic broken spin/valley symmetry states recently discovered in ABC trilayer graphene (ABC) perturbed by a large transverse displacement field. Our conclusions combine insights from ABC trilayer graphene electronic structure models and mean field theory, and are guided by precise magneto-oscillation Fermi-surface-area measurements. We conclude that the physics of ABC trilayer graphene is shaped by the principle of momentum-space condensation, which favors Fermi surface reconstructions enabled by broken spin/valley flavor symmetries when the single-particle bands imply thin annular Fermi seas. We find one large outer Fermi surface enclosed majority-flavor states and one or more small inner hole-like Fermi surfaces enclosed minority-flavor states that are primarily responsible for nematic order. The smaller surfaces can rotate along a ring of van-Hove singularities or reconstruct into multiple Fermi surfaces with little cost in energy. We propose that the latter property is responsible for the quantum oscillation frequency fractionalization seen experimentally in some regions of the carrier-density/displacement-field phase diagram.