Observation of the spiral spin liquid in a triangular-lattice material

N N. D. Andriushin S S. E. Nikitin Ø. S. Fjellvåg J J. S. White A A. Podlesnyak D D. S. Inosov M M. C. Rahn M M. Schmidt M M. Baenitz A A. S. Sukhanov

Abstract

Abstract The spiral spin liquid (SSL) is a highly degenerate state characterized by a continuous contour or surface in reciprocal space spanned by a spiral propagation vector. Although the SSL state has been predicted in a number of various theoretical models, very few materials are so far experimentally identified to host such a state. Via combined single-crystal wide-angle and small-angle neutron scattering, we report observation of the SSL in the quasi-two-dimensional delafossite-like AgCrSe2. We show that it is a very close realization of the ideal Heisenberg J 1–J 2–J 3 frustrated model on the triangular lattice. By supplementing our experimental results with microscopic spin-dynamics simulations, we demonstrate how such exotic magnetic states are driven by thermal fluctuations and exchange frustration.

Article Details

Volume / Issue Vol. 16, Issue 1
Published March 17, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

N

N. D. Andriushin

S

S. E. Nikitin

Ø. S. Fjellvåg

J

J. S. White

A

A. Podlesnyak

D

D. S. Inosov

M

M. C. Rahn

M

M. Schmidt

M

M. Baenitz

A

A. S. Sukhanov