Topological phase transitions by time-dependent electromagnetic fields in frustrated magnets: Role of dynamical and static magnetic fields
arXiv:2511.13136 · doi:10.1103/mt2j-r57h
Abstract
We theoretically investigate the effects of time-dependent electromagnetic fields on frustrated magnets with the spatial inversion symmetry. Two types of external-field setups are considered: One is a circularly polarized electromagnetic field and the other is a combination of a circularly polarized electric field and a static magnetic field. The system is modeled by a classical frustrated Heisenberg model on a triangular lattice, whose ground state is a single- spiral spin configuration. The effects of irradiated electric and magnetic fields are taken into account by the inverse Dzyaloshinskii-Moriya (DM) interaction and the Zeeman coupling, respectively, without heating effects. By numerically solving the Landau-Lifshitz-Gilbert equation, we find that the two field configurations lead to distinct skyrmion crystal (SkX) phases and their associated topological phase transitions: in the former setup, SkXs composed of skyrmions with skyrmion numbers of one and two with opposite signs emerge, whereas in the latter setup, SkXs with the same sign appear. The stabilization mechanisms of these SkXs are accounted for by the competition among electromagnetic-field-induced chiral DM interactions, electric-field-induced three-spin interactions, and the Zeeman coupling based on the high-frequency expansion within the Floquet formalism. Furthermore, for the latter setup, we find that the stability region of the SkX phase varies significantly depending on the timing of the application of the circularly polarized electric field and the static magnetic field. Our findings would broaden the possible routes to generate and control SkXs by time-dependent electromagnetic fields, advancing both the theoretical comprehension and experimental control of topological spin crystals.
10 pages, 7 figures
References in corpus (39)
- Skyrmion Lattice in a Chiral Magnet
- Spin current and magneto-electric effect in non-collinear magnets
- Recent Advances in Physical Reservoir Computing: A Review
- Spontaneous Skyrmion Ground States in Magnetic Metals
- Topological Hall effect in the A-phase of MnSi
- Ferroelectricity in spiral magnets
- Role of the Dzyaloshinskii-Moriya interaction in multiferroic perovskites
- Skyrmion lattice with a giant topological Hall effect in a frustrated triangular-lattice magnet
- High-frequency approximation for periodically driven quantum systems from a Floquet-space perspective
- Multiple-q states and skyrmion lattice of the triangular-lattice Heisenberg antiferromagnet under magnetic fields
- Multiply periodic states and isolated skyrmions in an anisotropic frustrated magnet
- Skyrmion-electronics: Writing, deleting, reading and processing magnetic skyrmions toward spintronic applications
- Skyrmion phase and competing magnetic orders on a breathing kagome lattice
- Skyrmions and Anomalous Hall Effect in a Dzyloshinskii-Moriya Spiral Magnet
- Orbital ferromagnetism and anomalous Hall effect in antiferromagnets on distorted fcc lattice
- Ginzburg-Landau theory for skyrmions in inversion-symmetric magnets with competing interactions
- Spontaneous skyrmionic lattice from anisotropic symmetric exchange in a Ni-halide monolayer
- Bubble and Skyrmion Crystals in Frustrated Magnets with Easy-Axis Anisotropy
- Long-range crystalline nature of the skyrmion lattice in MnSi
- Meron, skyrmion, and vortex crystals in centrosymmetric tetragonal magnets
- Pattern recognition with neuromorphic computing using magnetic-field induced dynamics of skyrmions
- Nanometric skyrmion lattice from anisotropic exchange interactions in a centrosymmetric host
- Noncoplanar multiple- spin textures by itinerant frustration: Effects of single-ion anisotropy and bond-dependent anisotropy
- Laser-Driven Multiferroics and Ultrafast Spin Current Generation
- Effect of magnetic anisotropy on Skyrmions with a high topological number in itinerant magnets
- Nonlinear magnetization dynamics of antiferromagnetic spin resonance induced by intense terahertz magnetic field
- Multiple skyrmion crystal phases by itinerant frustration in centrosymmetric tetragonal magnets
- In situ Electric Field Skyrmion Creation in Magnetoelectric CuOSeO
- Encoding orbital angular momentum of light in magnets
- Creation of Skyrmions by Electric Field on Chiral-Lattice Magnetic Insulators
- Writing a skyrmion on multiferroic materials
- Stabilization mechanisms of magnetic skyrmion crystal and multiple- states based on momentum-resolved spin interactions
- Skyrmion crystal in the RKKY system on the two-dimensional triangular lattice
- Dynamical Switching of Magnetic Topology in Microwave-Driven Itinerant Magnet
- Electric-field control of magnetic anisotropies: applications to Kitaev spin liquids and topological spin textures
- Symmetry analysis of light-induced magnetic interactions via Floquet engineering
- Skyrmion Generation through the Chirality Interplay of Light and Magnetism
- Floquet theory and applications in open quantum and classical systems
- Bimeron Crystals by a Linearly Polarized AC Electric Field in Frustrated Magnets