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Electrical conductivity of antiferromagnetic Dirac quasi-particles

反強磁性ディラック準粒子の電気伝導度

山本 慧   ; Smejkal, L.*; Jungwirth, T.*; Sinova, J.*

Yamamoto, Kei; Smejkal, L.*; Jungwirth, T.*; Sinova, J.*

We study the influence of a change in Neel vector orientation on electrical conductivity in antiferromagnetic Dirac nodal-point and nodal-line semimetals. In certain PT symmetric antiferromagnetic materials, such as CuMnAs, protected anti-crossings occur when the Neel vector is oriented along a crystallographic high-symmetry axis. By an explicit computation for model tight-binding Hamiltonians, we demonstrate that the transition between gapless and gapped phases mediated by the rotation of Neel vector manifests itself in a strong orientation dependence o electrical conductivity.

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