论文标题
Volkov-Pankratov在拓扑石墨烯Nanoribbons中
Volkov-Pankratov states in topological graphene nanoribbons
论文作者
论文摘要
在拓扑系统中,正界面附近的间隙发作中的调制可以导致大量边缘状态的出现,就像Volkov和Pankratov最初描述的那样。在这项工作中,我们研究了在系统边缘附近平稳调制的固有自旋轨道耦合的情况下的石墨烯纳米纤维。我们表明,此空间调制还导致沃尔科夫 - 帕克拉托夫州的出现,除了受拓扑保护的情况外。我们通过两种互补方法获得了此结果,一种基于有效的低能狄拉克方程描述,另一个基于完全数值的紧密结合方法,在两者之间找到了极好的一致性。然后,我们展示如何揭示沃尔科夫 - 帕克拉托夫州的存在,并讨论可能观察到这种状态的可能的石墨烯样结构。
In topological systems, a modulation in the gap onset near interfaces can lead to the appearance of massive edge states, as were first described by Volkov and Pankratov. In this work, we study graphene nanoribbons in the presence of intrinsic spin-orbit coupling smoothly modulated near the system edges. We show that this space modulation leads to the appearance of Volkov-Pankratov states, in addition to the topologically protected ones. We obtain this result by means of two complementary methods, one based on the effective low-energy Dirac equation description and the other on a fully numerical tight-binding approach, finding excellent agreement between the two. We then show how transport measurements might reveal the presence of Volkov-Pankratov states, and discuss possible graphene-like structures in which such states might be observed.