Band Topology of Bismuth Quantum Films

Bismuth has been the key element in the discovery and development of topological insulator materials. Previous theoretical studies indicated that Bi is topologically trivial and it can transform into the topological phase by alloying with Sb. However, recent high-resolution angle-resolved photoemiss...

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Bibliographic Details
Main Authors: Tay-Rong Chang, Qiangsheng Lu, Xiaoxiong Wang, Hsin Lin, T. Miller, Tai-Chang Chiang, Guang Bian
Format: Article
Language:English
Published: MDPI AG 2019-09-01
Series:Crystals
Subjects:
Online Access:https://www.mdpi.com/2073-4352/9/10/510
Description
Summary:Bismuth has been the key element in the discovery and development of topological insulator materials. Previous theoretical studies indicated that Bi is topologically trivial and it can transform into the topological phase by alloying with Sb. However, recent high-resolution angle-resolved photoemission spectroscopy (ARPES) measurements strongly suggested a topological band structure in pure Bi, conflicting with the theoretical results. To address this issue, we studied the band structure of Bi and Sb films by ARPES and first-principles calculations. The quantum confinement effectively enlarges the energy gap in the band structure of Bi films and enables a direct visualization of the <inline-formula> <math display="inline"> <semantics> <msub> <mi mathvariant="double-struck">Z</mi> <mn>2</mn> </msub> </semantics> </math> </inline-formula> topological invariant of Bi. We find that Bi quantum films in topologically trivial and nontrivial phases respond differently to surface perturbations. This way, we establish experimental criteria for detecting the band topology of Bi by spectroscopic methods.
ISSN:2073-4352