Colloquium: Quantum skyrmionics
arXiv:1807.02203 · doi:10.1142/S0217979219300056
Abstract
Skyrmions are topological solitons that emerge in many physical contexts. In magnetism, they appear as textures of the spin-density field stabilized by different competing interactions and characterized by a topological charge that counts the number of times the order parameter wraps the sphere. They can behave as classical objects, when the spin texture varies slowly on the scale of the microscopic lattice of the magnet. However, the fast development of experimental tools to create and stabilize skyrmions in thin magnetic films has lead to a rich variety of textures, sometimes of atomistic sizes. In this article, we discuss, in a pedagogical manner, how to introduce quantum interference in the translational dynamics of skyrmion textures, starting from the micromagnetic equations of motion for a classical soliton. We study how the nontrivial topology of the spin texture manifests in the semiclassical regime, when the microscopic lattice potential is treated quantum-mechanically, but the external driving forces are taken as smooth classical perturbations. We highlight close relations to the fields of noncommutative quantum mechanics, Chern-Simons theories, and the quantum Hall effect.
28 pages, 9 figures, new references added; comments are welcome
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Cited by in corpus (24)
- The 2020 Skyrmionics Roadmap
- Spontaneous electric-polarization topology in confined ferroelectric nematics
- Skyrmion Qubits: Challenges For Future Quantum Computing Applications
- Probing the topology of the quantum analog of a classical skyrmion
- Colloquium: Quantum Properties and Functionalities of Magnetic Skyrmions
- Magnon-Skyrmion Hybrid Quantum Systems: Tailoring Interactions via Magnons
- Topological dynamical quantum phase transition in a quantum skyrmion phase
- Quantum Skyrmion Lattices in Heisenberg Ferromagnets
- Topological transport of deconfined hedgehogs in magnets
- Quantum Damping of Skyrmion Crystal Eigenmodes due to Spontaneous Quasiparticle Decay
- Quantum fluctuations in the order parameter of quantum skyrmion crystals
- Topical Review on Skyrmions and Hall Transport
- Emergence of mesoscale quantum phase transitions in a ferromagnet
- Proposal for simulating quantum spin models with the Dzyaloshinskii-Moriya interaction using Rydberg atoms and the construction of asymptotic quantum many-body scar states
- Quantum hydrodynamics of spin winding
- Topological magnetic textures in magnetic topological insulators
- Energy storage in magnetic textures driven by vorticity flow
- Quantum States of a Skyrmion in a 2D Antiferromagnet
- Spin parity effects in monoaxial chiral ferromagnetic chain
- Photocontrol of spin scalar chirality in centrosymmetric itinerant magnets
- Topological dipoles of quantum skyrmions
- Skyrmionic qubits stabilized by Dzyaloshinskii-Moriya interaction as platforms for qubits and quantum gates
- Nonhermitian adiabatic perturbation theory of topological quantization of the average velocity of a magnetic skyrmion under thermal fluctuations
- Skyrmionic Schrödinger cat states in monoaxial chiral magnets