Circular photogalvanic effect of surface states in the topological insulator Bi2(Te0.23Se0.77)3 nanowires grown by chemical vapor deposition

Author:

Li Minggui1,Yu Jinling1ORCID,Cui Guangzhou1,Chen Yonghai2ORCID,Lai Yunfeng13,Cheng Shuying13,He Ke4

Affiliation:

1. Institute of Micro/Nano Devices and Solar Cells, School of Physics and Information Engineering, Fuzhou University, Fuzhou 350108, China

2. Key Laboratory of Semiconductor Materials Science, Institute of Semiconductors, Chinese Academy of Sciences, Beijing 100083, China and College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences, Beijing 100049, China

3. Jiangsu Collaborative Innovation Center of Photovolatic Science and Engineering, Changzhou University, Changzhou, 213164 Jiangsu, China

4. Department of Physics, State Key Laboratory of Low Dimensional Quantum Physics, Tsinghua University, Beijing 100084, China

Abstract

Circular photogalvanic effect (CPGE) of single-crystalline ternary topological insulator [Formula: see text] nanowires, which are synthesized by the chemical vapor deposition, have been investigated. It is demonstrated that the distributions of the elements in the nanowires are fairly uniform, and they have high crystal quality. Compared with [Formula: see text] nanowires, the ternary [Formula: see text] nanowires have better responsivity to circularly polarized light. The incident angle dependence of the CPGE current indicates that the symmetry of the surface states of the nanowire belongs to [Formula: see text] symmetry. The temperature dependence of the CPGE current is also investigated. As the temperature decreases from 300 to 77 K, the CPGE current first increases and then decreases, which is due to the variation of the mobility and photo-generated carrier density with temperature. Our work suggests that ternary [Formula: see text] nanowires are good candidates for designing polarization-sensitive photoelectric devices.

Funder

national natural science foundation of china

Foreign cooperation project of Fujian province

Open research fond program of the state key laboratory of low-dimensional quantum physics

National key research and development program

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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