Prospecting chiral multi-site interactions in prototypical magnetic systems
arXiv:2004.11110 · doi:10.1103/PhysRevResearch.2.033240
Abstract
Atomistic spin models have found enormous success in addressing the properties of magnetic materials, grounded on the identification of the relevant underlying magnetic interactions. The huge development in the field of magnetic skyrmions and other noncollinear magnetic structures is largely due to our understanding of the chiral Dzyaloshinskii-Moriya interaction. Recently, various works have proposed new types of chiral interactions, with seemingly different forms, but the big picture is still missing. Here, we present a systematic construction of a generalized spin model containing isotropic and chiral multi-site interactions. These are motivated by a microscopic model that incorporates local spin moments and the spin-orbit interaction, and their symmetry properties are established. We show that the chiral interactions arise solely from the spin-orbit interaction and that the multi-site interactions do not have to follow Moriya's rules, unlike the Dzyaloshinskii-Moriya and chiral biquadratic interactions. The chiral multi-site interactions do not vanish due to inversion symmetry, and comply with a generalized Moriya rule: If all sites connected by the interaction lie in the same mirror plane, the chiral interaction vector must be perpendicular to this plane. We then illustrate our theoretical considerations with density functional theory calculations for prototypical magnetic systems. These are triangular trimers built out of Cr, Mn, Fe and Co adatoms on the Re(0001), Pt(111) and Au(111) surfaces, for which symmetry applies, and Cr and Fe square tetramers on Pt(001) with symmetry. The multi-site interactions are substantial in magnitude and cannot be neglected when comparing the energy of different magnetic structures. Finally, we discuss the recent literature in light of our findings, and clarify several unclear or confusing points.
Comments are welcome and appreciated
References in corpus (13)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Restoring the density-gradient expansion for exchange in solids and surfaces
- Generalized gradient approximation for solids and their surfaces
- Advanced capabilities for materials modelling with Quantum ESPRESSO
- Advances in the Physics of Magnetic Skyrmions and Perspective for Technology
- Mott Insulators in the Strong Spin-Orbit Coupling Limit: From Heisenberg to a Quantum Compass and Kitaev Models
- Incommensurate magnetic order in the alpha-Fe(Te,Se) superconductor systems
- First-order magnetic and structural phase transitions in FeSeTe
- Nanometric square skyrmion lattice in a centrosymmetric tetragonal magnet
- Possible Kitaev Quantum Spin Liquid State in 2D Materials with S=3/2
- First principles calculation of spin-interactions and magnetic ground states of Cr trimers on Au(111)
- Magnetic structure of monatomic Fe chains on Re(0001): emergence of chiral multi-spin interactions
- Mapping the magnetic exchange interactions from first principles: Anisotropy anomaly and application to Fe, Ni, and Co