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拓扑态与Bi(2)Se(3)表面二维电子气的共存。

Coexistence of the topological state and a two-dimensional electron gas on the surface of Bi(2)Se(3).

作者信息

Bianchi Marco, Guan Dandan, Bao Shining, Mi Jianli, Iversen Bo Brummerstedt, King Philip D C, Hofmann Philip

机构信息

Department of Physics and Astronomy, Interdisciplinary Nanoscience Center, Aarhus University, Aarhus C 8000, Denmark.

出版信息

Nat Commun. 2010 Nov 30;1:128. doi: 10.1038/ncomms1131.

Abstract

The surface of a topological insulator plays host to an odd number of linearly-dispersing Dirac fermions, protected against back-scattering by time-reversal symmetry. Such characteristics make these materials attractive not only for studying a range of fundamental phenomena in both condensed matter and particle physics, but also for applications ranging from spintronics to quantum computation. Here, we show that the single Dirac cone comprising the topological state of the prototypical topological insulator Bi(2)Se(3) can co-exist with a two-dimensional electron gas (2DEG), a cornerstone of conventional electronics. Creation of the 2DEG is tied to a surface band-bending effect, which should be general for narrow-gap topological insulators. This leads to the unique situation where a topological and a non-topological, easily tunable and potentially superconducting, metallic state are confined to the same region of space.

摘要

拓扑绝缘体的表面存在奇数个线性色散狄拉克费米子,时间反演对称性保护它们不发生背散射。这些特性使得这些材料不仅对研究凝聚态物理和粒子物理中的一系列基本现象具有吸引力,而且在从自旋电子学到量子计算等各种应用中也颇具吸引力。在此,我们表明,构成典型拓扑绝缘体Bi(2)Se(3)拓扑态的单个狄拉克锥可以与二维电子气(2DEG)共存,二维电子气是传统电子学的基石。二维电子气的产生与表面能带弯曲效应相关,这种效应对于窄带隙拓扑绝缘体来说应该是普遍存在的。这导致了一种独特的情况,即拓扑和非拓扑、易于调控且可能超导的金属态被限制在同一空间区域。

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