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arXiv:2209.09405 [cond-mat.mes-hall]AbstractReferencesReviewsResources

Helical Luttinger liquid on the edge of a 2-dimensional topological antiferromagnet

Yang Feng, Jinjiang Zhu, Weiyan Lin, Zichen Lian, Yongchao Wang, Hao Li, Hongxu Yao, Qiushi He, Yinping Pan, Yang Wu, Jinsong Zhang, Yayu Wang, Xiaodong Zhou, Jian Shen, Yihua Wang

Published 2022-09-20Version 1

Boundary helical Luttinger liquid (HLL) with broken bulk time-reversal symmetry belongs to a unique topological class which may occur in antiferromagnets (AFM). Here, we search for signatures of HLL on the edge of a recently discovered topological AFM, MnBi2Te4 even-layer. Using scanning superconducting quantum interference device, we directly image helical edge current in the AFM ground state appearing at its charge neutral point. Such helical edge state accompanies an insulating bulk which is topologically distinct from the ferromagnetic Chern insulator phase as revealed in a magnetic field driven quantum phase transition. The edge conductance of the AFM order follows a power-law as a function of temperature and source-drain bias which serves as strong evidence for HLL. Such HLL scaling is robust at finite fields below the quantum critical point. The observed HLL in a layered AFM semiconductor represents a highly tunable topological matter compatible with future spintronics and quantum computation.

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