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Crossover between weak antilocalization and weak localization in a magnetically doped topological insulator
Authors:Liu Minhao  Zhang Jinsong  Chang Cui-Zu  Zhang Zuocheng  Feng Xiao  Li Kang  He Ke  Wang Li-li  Chen Xi  Dai Xi  Fang Zhong  Xue Qi-Kun  Ma Xucun  Wang Yayu
Affiliation:State Key Laboratory of Low Dimensional Quantum Physics, Department of Physics, Tsinghua University, Beijing 100084, People's Republic of China.
Abstract:We report transport studies on magnetically doped Bi(2)Se(3) topological insulator ultrathin films grown by molecular beam epitaxy. The magnetotransport behavior exhibits a systematic crossover between weak antilocalization and weak localization with the change of magnetic impurity concentration, temperature, and magnetic field. We show that the localization property is closely related to the magnetization of the sample, and the complex crossover is due to the transformation of Bi(2)Se(3) from a topological insulator to a topologically trivial dilute magnetic semiconductor driven by magnetic impurities. This work demonstrates an effective way to manipulate the quantum transport properties of the topological insulators by breaking time-reversal symmetry.
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