Laser-controlled real- and reciprocal-space topology in multiferroic insulators
arXiv:2108.06535 · doi:10.1103/PhysRevLett.128.037201
Abstract
Magnetic materials in which it is possible to control the topology of their magnetic order in real space or the topology of their magnetic excitations in reciprocal space are highly sought-after as platforms for alternative data storage and computing architectures. Here we show that multiferroic insulators, owing to their magneto-electric coupling, offer a natural and advantageous way to address these two different topologies using laser fields. We demonstrate that via a delicate balance between the energy injection from a high-frequency laser and dissipation, single skyrmions -- archetypical topological magnetic textures -- can be set into motion with a velocity and propagation direction that can be tuned by the laser field amplitude and polarization, respectively. Moreover, we uncover an ultrafast Floquet magnonic topological phase transition in a laser-driven skyrmion crystal and we propose a new diagnostic tool to reveal it using the magnonic thermal Hall conductivity.
Accepted version by Physical Review Letters
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Cited by in corpus (13)
- Optical skyrmions and other topological quasiparticles of light
- Magnetoelectric Cavity Magnonics in Skyrmion Crystals
- Fundamental Theory of Current-Induced Motion of Magnetic Skyrmions
- Commensuration Effects on Skyrmion Hall Angle and Drag for Manipulation of Skyrmions on Two-Dimensional Periodic Substrates
- Symmetry analysis of light-induced magnetic interactions via Floquet engineering
- Analysis of photo-induced chirality and magnetic toroidal moment based on Floquet formalism
- Skyrmion Jellyfish in Driven Chiral Magnets
- Scalar spin chirality induced by a circularly polarized electric field in a classical kagome magnet
- Floquet theory and applications in open quantum and classical systems
- Triplons, triplon pairs and dynamical symmetries in laser-driven Shastry-Sutherland magnets
- Laser induced enhanced coupling between photons and squeezed magnons in antiferromagnets
- Vortex Crystals in Tetrahedral Antiferromagnets: Fractional Charges and Topological Magnons
- Topological Magnon-Plasmon Hybrids