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TOPICAL REVIEW — Low-dimensional nanostructures and devices
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TOPICAL REVIEW—Low-dimensional nanostructures and devices |
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Electrostatic field effects on three-dimensional topological insulators |
Yang Wen-Min (杨雯敏), Lin Chao-Jing (林朝镜), Liao Jian (廖剑), Li Yong-Qing (李永庆) |
Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China |
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Abstract Three-dimensional topological insulators are a new class of quantum matter which has interesting connections to nearly all main branches of condensed matter physics. In this article, we briefly review the advances in the field effect control of chemical potential in three-dimensional topological insulators. It is essential to the observation of many exotic quantum phenomena predicted to emerge from the topological insulators and their hybrid structures with other materials. We also describe various methods for probing the surface state transport. Some challenges in experimental study of electron transport in topological insulators will also be briefly discussed.
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Received: 13 May 2013
Revised: 07 August 2013
Accepted manuscript online:
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PACS:
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72.15.Rn
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(Localization effects (Anderson or weak localization))
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73.25.+i
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(Surface conductivity and carrier phenomena)
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03.65.Vf
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(Phases: geometric; dynamic or topological)
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71.70.Ej
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(Spin-orbit coupling, Zeeman and Stark splitting, Jahn-Teller effect)
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Fund: Project supported by the National Basic Research Program of China (Grant Nos. 2012CB921703 and 2009CB929101), the National Natural Science Foundation of China (Grant No. 91121003), and the Chinese Academy of Sciences. |
Corresponding Authors:
Li Yong-Qing
E-mail: yqli@iphy.ac.cn
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Cite this article:
Yang Wen-Min (杨雯敏), Lin Chao-Jing (林朝镜), Liao Jian (廖剑), Li Yong-Qing (李永庆) Electrostatic field effects on three-dimensional topological insulators 2013 Chin. Phys. B 22 097202
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