Anomalous Hall effect from inter-superlattice scattering in a noncollinear antiferromagnet

L Lilia S. Xie (Department of Chemistry) S Shannon S. Fender (Department of Chemistry) C Cameron Mollazadeh W Wuzhang Fang M Matthias D. Frontzek S Samra Husremović K Kejun Li I Isaac M. Craig (Department of Chemistry) B Berit H. Goodge M Matthew P. Erodici O Oscar Gonzalez (Department of Chemistry) J Jonathan D. Denlinger Y Yuan Ping D D. Kwabena Bediako

Abstract

Abstract Superlattice formation dictates the physical properties of many materials, including the nature of the ground state in magnetic materials. Chemical composition is commonly considered to be the primary determinant of superlattice identity, especially in intercalation compounds. Nevertheless, in this work, we find that kinetic control of superlattice growth leads to the coexistence of disparate crystallographic domains within a compositionally perfect single crystal. We demonstrate that Cr1/4TaS2 is a noncollinear antiferromagnet in which scattering between majority and minority superlattice domains engenders complex magnetotransport below the Néel temperature, including an anomalous Hall effect. We characterize the magnetic phases in different domains, image their nanoscale morphology, and propose a mechanism for nucleation and growth using a suite of experimental probes coupled with first-principles calculations and symmetry analysis. These results provide a blueprint for the deliberate engineering of macroscopic transport responses via microscopic tuning of magnetic exchange interactions in superlattice domains.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 01, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (14)

L

Lilia S. Xie

Department of Chemistry

S

Shannon S. Fender

Department of Chemistry

C

Cameron Mollazadeh

W

Wuzhang Fang

M

Matthias D. Frontzek

S

Samra Husremović

K

Kejun Li

I

Isaac M. Craig

Department of Chemistry

B

Berit H. Goodge

M

Matthew P. Erodici

O

Oscar Gonzalez

Department of Chemistry

J

Jonathan D. Denlinger

Y

Yuan Ping

D

D. Kwabena Bediako