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通过随机吸附稳定石墨烯中的拓扑相。

Stabilizing topological phases in graphene via random adsorption.

机构信息

International Center for Quantum Materials, Peking University, Beijing 100871, China.

出版信息

Phys Rev Lett. 2012 Sep 14;109(11):116803. doi: 10.1103/PhysRevLett.109.116803. Epub 2012 Sep 11.

Abstract

We study the possibility of realizing topological phases in graphene with randomly distributed adsorbates. When graphene is subjected to periodically distributed adatoms, the enhanced spin-orbit couplings can result in various topological phases. However, at certain adatom coverages, the intervalley scattering renders the system a trivial insulator. By employing a finite-size scaling approach and Landauer-Büttiker formula, we show that the randomization of adatom distribution greatly weakens the intervalley scattering, but plays a negligible role in spin-orbit couplings. Consequently, such a randomization turns graphene from a trivial insulator into a topological state.

摘要

我们研究了在含有随机分布吸附物的石墨烯中实现拓扑相的可能性。当石墨烯受到周期性分布的 adatoms 时,增强的自旋轨道耦合可以导致各种拓扑相。然而,在某些 adatoms 覆盖度下,谷间散射使系统成为平凡绝缘体。通过采用有限尺寸标度方法和 Landauer-Büttiker 公式,我们表明 adatoms 分布的随机化大大减弱了谷间散射,但对自旋轨道耦合的影响可以忽略不计。因此,这种随机化将石墨烯从平凡绝缘体转变为拓扑态。

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