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Large off-diagonal magnetoelectricity in a triangular Co2+-based collinear antiferromagnet

Authors :
Xu, Xianghan
Hao, Yiqing
Peng, Shiyu
Zhang, Qiang
Ni, Danrui
Yang, Chen
Dai, Xi
Cao, Huibo
Cava, R.J.
Xu, Xianghan
Hao, Yiqing
Peng, Shiyu
Zhang, Qiang
Ni, Danrui
Yang, Chen
Dai, Xi
Cao, Huibo
Cava, R.J.
Publication Year :
2023

Abstract

Magnetic toroidicity is an uncommon type of magnetic structure in solid-state materials. Here, we experimentally demonstrate that collinear spins in a material with R-3 lattice symmetry can host a significant magnetic toroidicity, even parallel to the ordered spins. Taking advantage of a single crystal sample of CoTe6O13 with an R-3 space group and a Co2+ triangular sublattice, temperature-dependent magnetic, thermodynamic, and neutron diffraction results reveal A-type antiferromagnetic order below 19.5 K, with magnetic point group -3′ and k = (0,0,0). Our symmetry analysis suggests that the missing mirror symmetry in the lattice could lead to the local spin canting for a toroidal moment along the c axis. Experimentally, we observe a large off-diagonal magnetoelectric coefficient of 41.2 ps/m that evidences the magnetic toroidicity. In addition, the paramagnetic state exhibits a large effective moment per Co2+, indicating that the magnetic moment in CoTe6O13 has a significant orbital contribution. CoTe6O13 embodies an excellent opportunity for the study of next-generation functional magnetoelectric materials. © 2023, The Author(s).

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1430646250
Document Type :
Electronic Resource