DOAJ Open Access 2022

Spin structure and dynamics of the topological semimetal Co3Sn2-x In x S2

Kelly J. Neubauer Feng Ye Yue Shi Paul Malinowski Bin Gao +5 lainnya

Abstrak

Abstract The anomalous Hall effect (AHE), typically observed in ferromagnetic (FM) metals with broken time-reversal symmetry, depends on electronic and magnetic properties. In Co3Sn2-x In x S2, a giant AHE has been attributed to Berry curvature associated with the FM Weyl semimetal phase, yet recent studies report complicated magnetism. We use neutron scattering to determine the spin dynamics and structures as a function of x and provide a microscopic understanding of the AHE and magnetism interplay. Spin gap and stiffness indicate a contribution from Weyl fermions consistent with the AHE. The magnetic structure evolves from c-axis ferromagnetism at $$x = 0$$ x = 0 to a canted antiferromagnetic (AFM) structure with reduced c-axis moment and in-plane AFM order at $$x = 0.12$$ x = 0.12 and further reduced c-axis FM moment at $$x = 0.3$$ x = 0.3 . Since noncollinear spins can induce non-zero Berry curvature in real space acting as a fictitious magnetic field, our results revealed another AHE contribution, establishing the impact of magnetism on transport.

Penulis (10)

K

Kelly J. Neubauer

F

Feng Ye

Y

Yue Shi

P

Paul Malinowski

B

Bin Gao

K

Keith M. Taddei

P

Philippe Bourges

A

Alexandre Ivanov

J

Jiun-Haw Chu

P

Pengcheng Dai

Format Sitasi

Neubauer, K.J., Ye, F., Shi, Y., Malinowski, P., Gao, B., Taddei, K.M. et al. (2022). Spin structure and dynamics of the topological semimetal Co3Sn2-x In x S2. https://doi.org/10.1038/s41535-022-00523-w

Akses Cepat

PDF tidak tersedia langsung

Cek di sumber asli →
Lihat di Sumber doi.org/10.1038/s41535-022-00523-w
Informasi Jurnal
Tahun Terbit
2022
Sumber Database
DOAJ
DOI
10.1038/s41535-022-00523-w
Akses
Open Access ✓