CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES |
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Magnetic and topological transitions in three-dimensional topological Kondo insulator |
Huan Li1**, Zhi-Yong Wang1, Xiao-Jun Zheng1**, Yu Liu2,3, Yin Zhong4 |
1College of Science, Guilin University of Technology, Guilin 541004 2Institute of Applied Physics and Computational Mathematics, Beijing 100088 3Software Center for High Performance Numerical Simulation, China Academy of Engineering Physics, Beijing 100088 4Center for Interdisciplinary Studies & Key Laboratory for Magnetism and Magnetic Materials of the MoE, Lanzhou University, Lanzhou 730000
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Cite this article: |
Huan Li, Zhi-Yong Wang, Xiao-Jun Zheng et al 2018 Chin. Phys. Lett. 35 127501 |
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Abstract Using an extended slave-boson method, we draw a global phase diagram summarizing both magnetic phases and paramagnetic (PM) topological insulators (TIs) in a three-dimensional topological Kondo insulator (TKI). By including electron hopping (EH) up to the third neighbors, we identify four strong TI (STI) phases and two weak TI (WTI) phases. Then, the PM phase diagrams characterizing topological transitions between these TIs are depicted as functions of EH, $f$-electron energy level, and hybridization constant. We also find an insulator–metal transition from an STI phase that has surface Fermi rings and spin textures in qualitative agreement with the TKI candidate SmB$_6$. In the weak hybridization regime, antiferromagnetic (AF) order naturally arises in the phase diagrams. Depending on how the magnetic boundary crosses the PM topological transition lines, AF phases are classified into the AF topological insulator (AFTI) and the non-topological AF insulator, according to their $\mathcal{Z}_2$ indices. In two small regions of parameter space, two distinct topological transition processes between AF phases occur, leading to two types of AFTIs showing distinguishable surface dispersions around their Dirac points.
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Received: 26 September 2018
Published: 23 November 2018
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PACS: |
75.30.Mb
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(Valence fluctuation, Kondo lattice, and heavy-fermion phenomena)
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75.30.Kz
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(Magnetic phase boundaries (including classical and quantum magnetic transitions, metamagnetism, etc.))
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75.70.Tj
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(Spin-orbit effects)
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Fund: Supported by the National Natural Science Foundation of China under Grant Nos 11764010, 11504061, 11564008, 11704084, and 11704166, the Natural Science Foundation of Guangxi Province under Grant Nos 2017GXNSFAA198169 and 2017GXNSFBA198115, and the SPC-Lab Research Fund under Grant No XKFZ201605. |
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[1] | Qi X L and Zhang S C 2011 Rev. Mod. Phys. 83 1057 | [2] | Go A, Witczak-Krempa W, Jeon G S, Park K and Kim Y B 2012 Phys. Rev. Lett. 109 066401 | [3] | Yu S L, Xie X C and Li J X 2011 Phys. Rev. Lett. 107 010401 | [4] | Wang Z and Zhang S C 2012 Phys. Rev. B 86 165116 | [5] | Wan X G, Turner A M, Vishwanath A and Savrasov S Y 2011 Phys. Rev. B 83 205101 | [6] | Dzero M, Sun K, Coleman P and Galitski V 2012 Phys. Rev. B 85 045130 | [7] | Mong R S K, Essin A M and Moore J E 2010 Phys. Rev. B 81 245209 | [8] | Fang C, Gilbert M J and Bernevig B A 2013 Phys. Rev. B 88 085406 | [9] | Li Z, Su H, Yang X and Zhang J 2015 Phys. Rev. B 91 235128 | [10] | Li H, Zhong Y, Liu Y, Luo H G and Song H F 2018 J. Phys.: Condens. Matter 30 435601 | [11] | Legner M, Rüegg A and Sigrist M 2014 Phys. Rev. B 89 085110 | [12] | Xu N, Ding H and Shi M 2016 J. Phys.: Condens. Matter 28 363001 | [13] | Vekić M, Cannon J W, Scalapino D J, Scalettar R T and Sugar R L 1995 Phys. Rev. Lett. 74 2367 | [14] | Peters R, Yoshida T and Kawakami N 2018 Phys. Rev. B 98 075104 | [15] | Zhou Y Z, Wu Q, Rosa P F S, Yu R, Guo J, Yi W, Zhang S, Wang Z, Wang H H, Cai S, Yang K, Li A, Jiang Z, Zhang S, Wei X J, Huang Y Y, Sun P J, Yang Y F, Fisk Z, Si Q M, Zhao Z X and Sun L L 2017 Sci. Bull. 62 1439 | [16] | Butch N P, Paglione J, Chow P, Xiao Y, Marianetti C A, Booth C H and Jeffries J R 2016 Phys. Rev. Lett. 116 156401 | [17] | Chang K W and Chen P J 2018 Phys. Rev. B 97 195145 | [18] | Alexandrov V, Coleman P and Erten O 2015 Phys. Rev. Lett. 114 177202 | [19] | Kotliar G and Ruckenstein A E 1986 Phys. Rev. Lett. 57 1362 | [20] | Sun S J, Yang M F and Hong T M 1993 Phys. Rev. B 48 16127 | [21] | Paraskevas P, Martin B and Mohamed M 2015 Europhys. Lett. 110 66002 |
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