4.5 Article

Topological magnon bands and unconventional thermal Hall effect on the frustrated honeycomb and bilayer triangular lattice

期刊

JOURNAL OF PHYSICS-CONDENSED MATTER
卷 29, 期 38, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1361-648X/aa7dd2

关键词

scalar spin chirality; unconventional thermal Hall effect; topological magnon bands

资金

  1. Government of Canada through Industry Canada
  2. Province of Ontario through the Ministry of Research and Innovation

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In the conventional ferromagnetic systems, topological magnon bands and thermal Hall effect are due to the Dzyaloshinskii-Moriya interaction (DMI). In principle, however, the DMI is either negligible or it is not allowed by symmetry in some quantum magnets. Therefore, we expect that topological magnon features will not be present in those systems. In addition, quantum magnets on the triangular-lattice are not expected to possess topological features as the DMI or spin-chirality cancels out due to equal and opposite contributions from adjacent triangles. Here, however, we predict that the isomorphic frustrated honeycomb-lattice and bilayer triangular-lattice antiferromagnetic system will exhibit topological magnon bands and topological thermal Hall effect in the absence of an intrinsic DMI. These unconventional topological magnon features are present as a result of magnetic-field-induced non-coplanar spin configurations with nonzero scalar spin chirality. The relevance of the results to realistic bilayer triangular antiferromagnetic materials are discussed.

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