arXiv · 1511.02413
Experimental Observation of Two Massless Dirac-Fermion Gases in Graphene-Topological Insulator Heterostructure
Abstract
Graphene and topological insulators (TI) possess two-dimensional Dirac fermions with distinct physical properties. Integrating these two Dirac materials in a single device creates interesting opportunities for exploring new physics of interacting massless Dirac fermions. Here we report on a practical route to experimental fabrication of graphene-Sb2Te3 heterostructure. The graphene-TI heterostructures are prepared by using a dry transfer of chemical-vapor-deposition grown graphene film. ARPES measurements confirm the coexistence of topological surface states of Sb2Te3 and Dirac {\pi} bands of graphene, and identify the twist angle in the graphene-TI heterostructure. The results suggest a potential tunable electronic platform in which two different Dirac low-energy states dominate the transport behavior.
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Guang Bian, Ting-Fung Chung, Chang Liu, Chaoyu Chen, Tay-Rong Chang, Tailung Wu, Ilya Belopolski, Hao Zheng, Su-Yang Xu, Daniel S. Sanchez, Nasser Alidoust, Jonathan Pierce, Bryson Quilliams, Philip P. Barletta, Stephane Lorcy, Jose Avila, Guoqing Chang, Hsin Lin, Horng-Tay Jeng, Maria-Carmen Asensio, Yong P. Chen, M. Zahid Hasan. 2015-11-08. Experimental Observation of Two Massless Dirac-Fermion Gases in Graphene-Topological Insulator Heterostructure. https://doi.org/10.1088/2053-1583/3/2/021009
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