论文标题

大量超级晶格中的二维狄拉克费米斯

Two-dimensional Dirac fermions in a mass superlattice

论文作者

De Martino, A., Dell'Anna, L., Handt, L., Miserocchi, A., Egger, R.

论文摘要

我们研究了在一个方向沿正值和负值之间交替的周期性质量项的存在,研究了二维(2D)dirac fermions。对于石墨烯单层或拓扑绝缘子的表面状态,可以实现这种情况。低能物理学由沿零质量线传播的手性jackiw-rebbi模式,其能量分散是由各向异性的dirac锥体给出的。通过转移矩阵方法,我们获得了零件恒定质量超晶格的精确结果。在Bloch状态之上,可以分别以有限大小的几何形状或非均匀的静电势存在两个不同类别的边界和/或界面模式。我们计算两种类型的边界和界面模式的色散关系,它们源自靠近超晶格布里群区(BZ)中心的状态,或者是通过LIFSHITZ TRUSINITION从BZ边界附近的状态进行的。在存在潜在步骤的情况下,我们预测界面模式,BLOCH波函数和电导将敏感地取决于相对于质量超晶格的步骤位置。

We study two-dimensional (2D) Dirac fermions in the presence of a periodic mass term alternating between positive and negative values along one direction. This scenario could be realized for a graphene monolayer or for the surface states of topological insulators. The low-energy physics is governed by chiral Jackiw-Rebbi modes propagating along zero-mass lines, with the energy dispersion of the Bloch states given by an anisotropic Dirac cone. By means of the transfer matrix approach, we obtain exact results for a piece-wise constant mass superlattice. On top of Bloch states, two different classes of boundary and/or interface modes can exist in a finite-size geometry or in a nonuniform electrostatic potential, respectively. We compute the dispersion relation for both types of boundary and interface modes, which originate either from states close to the superlattice Brillouin zone (BZ) center or, via a Lifshitz transition, from states near the BZ boundary. In the presence of a potential step, we predict that the interface modes, the Bloch wave functions, and the electrical conductance will sensitively depend on the step position relative to the mass superlattice.

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