Magnetic structure of a multiferroic compound: Cu2OCl2

Abstract

The Cu2OCl2 compound has been shown to be a high-temperature spin-driven multiferroic system, with a linear magneto-electric coupling. In this paper we propose a complete study of its magnetic structure. We derive the low energy magnetic Hamiltonian using ab-initio multi-reference configuration interactions and the spin structure using Monte-Carlo simulations. Among the three magnetic structures proposed in the literature from different experimental results, our calculations support the incommensurate cycloid magnetic structure with a q=(qa,0,0) propagation vector. Using symmetry analysis, we showed that all experimental results (polarization, magnetic order, magneto-electric coupling) can be accounted for in the $Fd'd'2$ magnetic space group (2-fold axis along c).

Supplementary files

Article information

Article type
Paper
Submitted
28 Feb 2024
Accepted
26 Mar 2024
First published
28 Mar 2024

Faraday Discuss., 2024, Accepted Manuscript

Magnetic structure of a multiferroic compound: Cu2OCl2

J. Lévèque, E. Rebolini, A. Saùl and M. Lepetit , Faraday Discuss., 2024, Accepted Manuscript , DOI: 10.1039/D4FD00042K

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