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First-principles studies of the three-dimensional strong topological insulators Bi<sub>2</sub>Te<sub>3</sub>, Bi<sub>2</sub>Se<sub>3</sub>and Sb<sub>2</sub>Te<sub>3</sub>

New Journal of Physics · 2010 · Vol. 12(6) · pp. 065013–065013
Wei ZhangRui YuHaijun ZhangXi DaiZhong Fang

Abstract

Bi2Se3, Bi2Te3 and Sb2Te3 compounds are recently predicted to be 3-dimentional (3D) strong topological insulators. In this paper, based on ab-initio calculations, we study in detail the topological nature and the surface states of this family compounds. The penetration depth and the spin-resolved Fermi surfaces of the surface states will be analyzed. We will also present an procedure, from which highly accurate effective Hamiltonian can be constructed, based on projected atomic Wannier functions (which keep the symmetries of the systems). Such Hamiltonian can be used to study the semi-infinite systems or slab type supercells efficiently. Finally, we discuss the 3D topological phase transition in Sb2(Te1-xSex)3 alloy system.

Topological Materials and PhenomenaGraphene research and applicationsElectronic and Structural Properties of OxidesPhysicsTopological insulatorHomogeneous spaceHamiltonian (control theory)Ab initioSurface statesCondensed matter physicsWannier functionFermi levelAb initio quantum chemistry methods
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References
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Physical Review B · 2007 · 2,323 citations
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