Experimental Realization of a Three-Dimensional Topological Insulator, Bi2Te3

Experimental Realization of a Three-Dimensional Topological Insulator, Bi2Te3

Chen, Y. L.;Analytis, J. G.;Chu, J. -H.;Liu, Z. K.;Mo, S. -K.;Qi, X. L.;Zhang, H. J.;Lu, D. H.;Dai, X.;Fang, Z.;Zhang, S. C.;Fisher, I. R.;Hussain, Z.;Shen, Z. -X.;Chen, Y. L.;Analytis, J. G.;Chu, J. -H.;Liu, Z. K.;Mo, S. -K.;Qi, X. L.;Zhang, H. J.;Lu, D. H.;Dai, X.;Fang, Z.;Zhang, S. C.;Fisher, I. R.;Hussain, Z.;Shen, Z. -X.;
sci 1970 Vol. 325 pp. 178-
152
l.1970sciexperimental

Abstract

Three-dimensional topological insulators are a new state of quantum matter with a bulk gap and odd number of relativistic Dirac fermions on the surface. By investigating the surface state of Bi2Te3 with angle-resolved photoemission spectroscopy, we demonstrate that the surface state consists of a single nondegenerate Dirac cone. Furthermore, with appropriate hole doping, the Fermi level can be tuned to intersect only the surface states, indicating a full energy gap for the bulk states. Our results establish that Bi2Te3 is a simple model system for the three-dimensional topological insulator with a single Dirac cone on the surface. The large bulk gap of Bi2Te3 also points to promising potential for high-temperature spintronics applications.

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