DOAJ Open Access 2026

Kitaev interaction and proximate higher-order skyrmion crystal in the triangular lattice van der Waals antiferromagnet NiI 2

Chaebin Kim Olivia Vilella Youjin Lee Pyeongjae Park Yeochan An +12 lainnya

Abstrak

Abstract Topological spin textures are a spectacular manifestation of the chirality of the magnetic nanostructures protected by topology. Most known skyrmion systems are restricted to a topological charge of one, require an external magnetic field for stabilization, and are only reported in a few materials. Here, we investigate the possibility that the Kitaev anisotropic-exchange interaction stabilizes a higher-order skyrmion crystal in the insulating van der Waals magnet NiI2. We unveil and explain the incommensurate static and dynamic magnetic correlations across three temperature-driven magnetic phases of this compound using neutron scattering measurements, simulations, and modeling. Our parameter optimisation yields a minimal Kitaev-Heisenberg Hamiltonian for NiI2 which reproduces the experimentally observed magnetic excitations. Monte Carlo simulations for this model predict the emergence of the higher-order skyrmion crystal but neutron diffraction and optical experiments in the candidate intermediate temperature regime are inconclusive. We discuss possible deviations from the Kitaev-Heisenberg model that explains our results and conclude that NiI2, in addition to multiferroic properties in the bulk and few-layer limits, is a Kitaev bulk material proximate to the finite temperature higher-order skyrmion crystal phase.

Penulis (17)

C

Chaebin Kim

O

Olivia Vilella

Y

Youjin Lee

P

Pyeongjae Park

Y

Yeochan An

W

Woonghee Cho

M

Matthew B. Stone

A

Alexander I. Kolesnikov

Y

Yiqing Hao

S

Shinichiro Asai

S

Shinichi Itoh

T

Takatsugu Masuda

S

Sakib Matin

Y

Yuna Kim

S

Sung-Jin Kim

M

Martin Mourigal

J

Je-Geun Park

Format Sitasi

Kim, C., Vilella, O., Lee, Y., Park, P., An, Y., Cho, W. et al. (2026). Kitaev interaction and proximate higher-order skyrmion crystal in the triangular lattice van der Waals antiferromagnet NiI 2. https://doi.org/10.1038/s41535-026-00851-1

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Informasi Jurnal
Tahun Terbit
2026
Sumber Database
DOAJ
DOI
10.1038/s41535-026-00851-1
Akses
Open Access ✓