Paths to collapse for isolated skyrmions in few-monolayer ferromagnetic films
arXiv:1704.08025 · doi:10.1103/PhysRevB.95.214418
Abstract
Magnetic skyrmions are topological spin configurations in materials with chiral Dzyaloshinskii-Moriya interaction (DMI), that are potentially useful for storing or processing information. To date, DMI has been found in few bulk materials, but can also be induced in atomically thin magnetic films in contact with surfaces with large spin-orbit interactions. Recent experiments have reported that isolated magnetic skyrmions can be stabilized even near room temperature in few-atom thick magnetic layers sandwiched between materials that provide asymmetric spin-orbit coupling. Here we present the minimum-energy path analysis of three distinct mechanisms for the skyrmion collapse, based on ab initio input and the performed atomic-spin simulations. We focus on the stability of a skyrmion in three atomic layers of Co, either epitaxial on the Pt(111) surface, or within a hybrid multilayer where DMI nontrivially varies per monolayer due to competition between different symmetry-breaking from two sides of the Co film. In laterally finite systems, their constrained geometry causes poor thermal stability of the skyrmion toward collapse at the boundary, which we show to be resolved by designing the high-DMI structure within an extended film with lower or no DMI.
References in corpus (5)
- Spontaneous Skyrmion Ground States in Magnetic Metals
- Additive interfacial chiral interaction in multilayers for stabilization of small individual skyrmion at room temperature
- Magnetic skyrmion logic gates: conversion, duplication and merging of skyrmions
- Theory of current-driven motion of Skyrmions and spirals in helical magnets
- Effects of spatially engineered Dzyaloshinskii-Moriya interaction in ferromagnetic films
Cited by in corpus (35)
- Deterministic creation and deletion of a single magnetic skyrmion observed by direct time-resolved X-ray microscopy
- Direct demonstration of topological stability of magnetic skyrmions via topology manipulation
- Trochoidal motion and pair generation in skyrmion and antiskyrmion dynamics under spin-orbit torques
- Skyrmion formation in a bulk chiral magnet at zero magnetic field and above room temperature
- Stability and lifetime of antiferromagnetic skyrmions
- Skyrmion lifetimes in ultrathin films
- Nano-scale magnetic skyrmions and target states in confined geometries
- The skyrmion-bubble transition in a ferromagnetic thin film
- Controlled creation and stability of kπ-skyrmions on a discrete lattice
- Skyrmion-Skyrmion Interaction in a Magnetic Film
- Paths to annihilation of first and second-order (anti)skyrmions via (anti)meron nucleation on the frustrated square lattice
- Duplication, collapse and escape of magnetic skyrmions revealed using a systematic saddle point search method
- First-principles prediction of sub-10 nm skyrmions in Pd/Fe bilayers on Rh(111)
- Universality of annihilation barriers of large magnetic skyrmions in chiral and frustrated magnets
- Deflection of (anti)ferromagnetic skyrmions at heterochiral interfaces
- Current-driven skyrmion Depinning in Magnetic Granular Films
- Toward room-temperature nanoscale skyrmions in ultrathin films
- Tunable Snell's law for spin waves in heterochiral magnetic films
- Skyrmions in antiferromagnets: thermal stability and the effect of external field and impurities
- Stability of skyrmion crystal phase in antiferromagnetic triangular lattice with DMI and single-ion anisotropy
- The effect of boundary-induced chirality on magnetic textures in thin films
- Theoretical investigation of antiferromagnetic skyrmions in a triangular monolayer
- Stability of Long-lived Antiskyrmions in Mn-Pt-Sn Material
- Thermal Collapse of a Skyrmion
- Magnetic Skyrmion Annihilation by Quantum Mechanical Tunneling
- Micromagnetic Simulations Study of Skyrmions in Magnetic FePt Nanoelements
- Topological energy barrier for skyrmion lattice formation in MnSi
- Polyhexatic and Polycrystalline States of Skyrmion Lattices
- Effects of interlayer exchange on collapse mechanisms and stability of magnetic skyrmions
- High-resolution combined tunneling electron charge and spin transport theory of Néel and Bloch skyrmions
- Dynamics of the collapse of a ferromagnetic skyrmion in a centrosymmetric lattice
- Theory of high-resolution tunneling spin transport on a magnetic skyrmion
- Spin textures in chiral magnetic monolayers with suppressed nearest-neighbor exchange
- Lifetime of racetrack skyrmions
- High-resolution tunneling spin transport characteristics of topologically distinct magnetic skyrmionic textures from theoretical calculations