Enhanced skyrmion metastability under applied strain in FeGe
arXiv:2210.01702 · doi:10.1103/PhysRevB.106.214434
Abstract
Mechanical straining of skyrmion hosting materials has previously demonstrated increased phase stability through the expansion of the skyrmion equilibrium pocket. Additionally, metastable skyrmions can be generated via rapid field-cooling to form significant skyrmion populations at low temperatures. Using small-angle x-ray scattering and x-ray holographic imaging on a thermally strained 200 nm thick FeGe lamella, we observe temperature-induced strain effects on the structure and metastability of the skyrmion lattice. We find that in this sample orientation (H || [1 1 0]) with no strain, metastable skyrmions produced by field cooling through the equilibrium skyrmion pocket vanish from the sample upon dropping below the well known helical reorientation temperature. However, when strain is applied along [110] axis, and this procedure is repeated, a substantial volume fraction of metastable skyrmions persist upon cooling below this temperature down to 100 K. Additionally, we observe a large number of skyrmions retained after a complete magnetic field polarity reversal, implying that the metastable energy barrier protecting skyrmions from decay is enhanced.
References in corpus (12)
- Spontaneous Skyrmion Ground States in Magnetic Metals
- Magnetic skyrmion logic gates: conversion, duplication and merging of skyrmions
- Magnetic Skyrmion Bundles and Their Current-Driven Dynamics
- A Piezoelectric, Strain-Controlled Antiferromagnetic Memory Insensitive to Magnetic Fields
- Three-dimensional skyrmion states in thin films of cubic helimagnets
- Scaling Study and Thermodynamic Properties of the cubic Helimagnet FeGe
- Measuring the Formation Energy Barrier of Skyrmions in Zinc Substituted CuOSeO
- Giant enhancement of the skyrmion stability in a chemically strained helimagnet
- Nonlinear emergent elasticity and structural transitions of skyrmion crystal under uniaxial distortion
- Finsler geometry modeling and Monte Carlo study of skyrmion shape deformation by uniaxial stress
- Experimental Evidence of a change of Exchange Anisotropy Sign with Temperature in Zn-Substituted Cu2OSeO3
- X-ray holographic imaging of magnetic surface spirals in FeGe lamellae