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Magnetic order in 2D antiferromagnets revealed by spontaneous anisotropic magnetostriction

Maurits J. A. Houmes, Gabriele Baglioni, Makars Šiškins, Martin Lee, Dorye L. Esteras, Alberto M. Ruiz, Samuel Mañas‐Valero, Carla Boix‐Constant, José J. Baldoví, Eugenio Coronado, Yaroslav M. Blanter, Peter G. Steeneken, Herre S. J. van der Zant

2023Nature Communications20 citationsDOIOpen Access PDF

Abstract

Abstract The temperature dependent order parameter provides important information on the nature of magnetism. Using traditional methods to study this parameter in two-dimensional (2D) magnets remains difficult, however, particularly for insulating antiferromagnetic (AF) compounds. Here, we show that its temperature dependence in AF MPS 3 (M(II) = Fe, Co, Ni) can be probed via the anisotropy in the resonance frequency of rectangular membranes, mediated by a combination of anisotropic magnetostriction and spontaneous staggered magnetization. Density functional calculations followed by a derived orbital-resolved magnetic exchange analysis confirm and unravel the microscopic origin of this magnetization-induced anisotropic strain. We further show that the temperature and thickness dependent order parameter allows to deduce the material’s critical exponents characterising magnetic order. Nanomechanical sensing of magnetic order thus provides a future platform to investigate 2D magnetism down to the single-layer limit.

Topics & Concepts

Condensed matter physicsMagnetostrictionMagnetismAnisotropyMagnetizationAntiferromagnetismMagnetic anisotropyMaterials scienceOrder (exchange)PhysicsMagnetic fieldQuantum mechanicsEconomicsFinancePhysics of Superconductivity and Magnetism2D Materials and ApplicationsMultiferroics and related materials
Magnetic order in 2D antiferromagnets revealed by spontaneous anisotropic magnetostriction | Litcius