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  5. Antiferromagnetic topological insulators

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Article
en
2010

Antiferromagnetic topological insulators

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en
2010
Vol 2011
Vol. 2011
DOI: 10.48550/arxiv.1004.1403

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Joel Moore
Joel Moore

University of California, Berkeley

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Roger S. K. Mong
Andrew M. Essin
Joel Moore

Abstract

We consider antiferromagnets breaking both time-reversal (Theta) and a primitive lattice translational symmetry (T) of a crystal but preserving the combination S = Theta T. The S symmetry leads to a Z_2 topological classification of insulators, separating the ordinary insulator phase from the "antiferromagnetic topological insulator" (AFTI) phase. This state is similar to the "strong" topological insulator with time-reversal symmetry, and shares with it such properties as a quantized magnetoelectric effect. However, for certain surfaces the surface states are intrinsically gapped with a half-quantum Hall effect (sigma_{xy} = e^2 / 2h), which may aid experimental confirmation of theta = pi quantized magnetoelectric coupling. Step edges on such a surface support gapless, chiral quantum wires. In closing we discuss GdBiPt as a possible example of this topological class.

How to cite this publication

Roger S. K. Mong, Andrew M. Essin, Joel Moore (2010). Antiferromagnetic topological insulators. , 2011, DOI: https://doi.org/10.48550/arxiv.1004.1403.

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Publication Details

Type

Article

Year

2010

Authors

3

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.48550/arxiv.1004.1403

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