Magnetoelectric effect and orbital magnetization in skyrmion crystals: Detection and characterization of skyrmions
arXiv:1802.06411 · doi:10.1103/PhysRevB.99.060406
Abstract
Skyrmions are small magnetic quasiparticles, which are uniquely characterized by their topological charge and their helicity. In this Rapid Communication, we show via calculations how both properties can be determined without relying on real-space imaging. The orbital magnetization and topological Hall conductivity measure the arising magnetization due to the circulation of electrons in the bulk and the occurrence of topologically protected edge channels due to the emergent field of a skyrmion crystal. Both observables quantify the topological Hall effect and distinguish skyrmions from antiskyrmions by sign. Additionally, we predict a magnetoelectric effect in skyrmion crystals, which is the generation of a magnetization (polarization) by application of an electric (magnetic) field. This effect is quantified by spin toroidization and magnetoelectric polarizability. The dependence of the transverse magnetoelectric effect on the skyrmion helicity fits that of the classical toroidal moment of the spin texture and allows to differentiate skyrmion helicities: it is largest for Bloch skyrmions and zero for Neel skyrmions. We predict distinct features of the four observables that can be used to detect and characterize skyrmions in experiments.
6 pages, 3 figures
References in corpus (23)
- Spontaneous Skyrmion Ground States in Magnetic Metals
- Magnetic skyrmion logic gates: conversion, duplication and merging of skyrmions
- Discovery of Magnetic Antiskyrmions Beyond Room Temperature in Tetragonal Heusler Materials
- Orbital magnetization in periodic insulators
- Robust formation of skyrmions and topological Hall effect in epitaxial thin films of MnSi
- Antiskyrmions stabilized at interfaces by anisotropic Dzyaloshinskii-Moriya interaction
- Antiferromagnetic skyrmion crystals: generation, topological Hall and topological spin Hall effect
- Quantum Hall Effect of Dirac Fermions in Graphene: Disorder Effect and Phase Diagram
- Toroidal order in metals without local inversion symmetry
- Real-Space Berry Phases - Skyrmion Soccer
- Stabilization and current-induced motion of antiskyrmion in the presence of anisotropic Dzyaloshinskii-Moriya interaction
- Unconventional Topological Hall Effect in Skyrmion Crystals Caused by the Topology of the Lattice
- Orbital magnetism of coupled bands models
- Evidence for a New Magnetoelectric Effect of Current-Induced Magnetization in a Toroidal Magnetic Ordered State of UNiB
- Overcoming the speed limit in skyrmion racetrack devices by suppressing the skyrmion Hall effect
- Microscopic Theory of Spin Toroidization in Periodic Crystals
- Chirality-driven orbital magnetic moments as a new probe for topological magnetic structures
- Topological Hall and Spin Hall Effects in Disordered Skyrmionic Textures
- Engineering Chiral and Topological Orbital Magnetism of Domain Walls and Skyrmions
- The family of topological Hall effects for electrons in skyrmion crystals
- Signatures of lattice geometry in quantum and topological Hall effect
- Orbital magnetization and its effects in spin-chiral ferromagnetic Kagome lattice
- Insights into the orbital magnetism of noncollinear magnetic systems
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- Beyond skyrmions: Review and perspectives of alternative magnetic quasiparticles
- Magnetic octupoles as the order parameter for unconventional antiferromagnetism
- Degeneracy Lifting of Néel, Bloch, and Anti-Skyrmion Crystals in Centrosymmetric Tetragonal Systems
- Controlling the helicity of magnetic skyrmions by electrical field in frustrated magnets
- Helicity locking of square skyrmion crystal in a centrosymmetric lattice system without vertical mirror symmetry
- Magnetoelectric classification of skyrmions
- Multifarious skyrmion phases on a trilayer triangular lattice
- Thermodynamic approach to electric quadrupole moments
- Quantum field theory of topological spin dynamics
- Orbital Hall Effect Accompanying Quantum Hall Effect: Landau Levels Cause Orbital Polarized Edge Currents
- Ferroaxial moment induced by vortex spin texture
- Topological orbital Hall effect caused by skyrmions and antiferromagnetic skyrmions
- Chirality-induced orbital Edelstein effect in an analytically solvable model
- Skyrmion crystal under point group: Role of out-of-plane Dzyaloshinskii-Moriya interaction
- Skyrmion crystal with integer and fractional skyrmion numbers in a nonsymmorphic lattice structure with the screw axis
- Skyrmion-driven topological Hall effect in a Shastry-Sutherland magnet
- Chiral magnetic phases in Moire bilayers of magnetic dipoles
- Orbital Magnetization under an Electric Field and Orbital Magnetoelectric Polarizabilty for a Bilayer Chern System
- Mixed topology ring states for Hall effect and orbital magnetism in skyrmions of Weyl semimetals
- Chirality-induced selectivity of angular momentum by orbital Edelstein effect in carbon nanotubes
- Compensated Quantum and Topological Hall Effects of Electrons in Polyatomic Stripe Lattices
- Three-dimensional topological orbital Hall effect caused by magnetic hopfions
- Synthetic magnetoelectric response of lattice bosonic insulators