4.8 Article

Magnetic Semimetals and Quantized Anomalous Hall Effect in EuB6

期刊

PHYSICAL REVIEW LETTERS
卷 124, 期 7, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.124.076403

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资金

  1. Volkswagen of America
  2. Affiliates Program of the Nanoscale Protoyping Laboratory
  3. National Natural Science Foundation of China [11974395]
  4. CAS Pioneer Hundred Talents Program
  5. National Thousand-Young-Talents Program
  6. Ministry of Science and Technology of China [2016YFA0300600]
  7. K.C. Wong Education Foundation [GJTD-2018-01]
  8. Hong Kong Research Grants Council [GRF16300918]
  9. National Science Foundation [ACI-1548562]
  10. NSF at the Pittsburgh Supercomputing Center [ACI-1445606]

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Exploration of the novel relationship between magnetic order and topological semimetals has received enormous interest in a wide range of both fundamental and applied research. Here we predict that soft ferromagnetic material EuB6 can achieve multiple topological semimetal phases by simply tuning the direction of the magnetic moment. Explicitly, EuB6 is a topological nodal-line semimetal when the moment is aligned along the [001] direction, and it evolves into a Weyl semimetal with three pairs of Weyl points by rotating the moment to the [111] direction. Interestingly, we identify a composite semimetal phase featuring the coexistence of a nodal line and Weyl points with the moment in the [110] direction. Topological surface states and anomalous Hall conductivity, which are sensitive to the magnetic order, have been computed and are expected to be experimentally observable. Large-Chern-number quantum anomalous Hall effect can be realized in its [111]-oriented quantum-well structures.

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