Tetrahedral triple-Q magnetic ordering and large spontaneous Hall conductivity in the metallic triangular antiferromagnet Co1/3TaS2

Author:

Park PyeongjaeORCID,Cho Woonghee,Kim ChaebinORCID,An YeochanORCID,Kang Yoon-GuORCID,Avdeev MaximORCID,Sibille RomainORCID,Iida KazukiORCID,Kajimoto RyoichiORCID,Lee Ki Hoon,Ju Woori,Cho En-Jin,Noh Han-Jin,Han Myung JoonORCID,Zhang Shang-Shun,Batista Cristian D.ORCID,Park Je-GeunORCID

Abstract

AbstractThe triangular lattice antiferromagnet (TLAF) has been the standard paradigm of frustrated magnetism for several decades. The most common magnetic ordering in insulating TLAFs is the 120° structure. However, a new triple-Q chiral ordering can emerge in metallic TLAFs, representing the short wavelength limit of magnetic skyrmion crystals. We report the metallic TLAF Co1/3TaS2 as the first example of tetrahedral triple-Q magnetic ordering with the associated topological Hall effect (non-zero σxy(H = 0)). We also present a theoretical framework that describes the emergence of this magnetic ground state, which is further supported by the electronic structure measured by angle-resolved photoemission spectroscopy. Additionally, our measurements of the inelastic neutron scattering cross section are consistent with the calculated dynamical structure factor of the tetrahedral triple-Q state.

Funder

National Research Foundation of Korea

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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