Fresnel Magnetic Imaging of Ultrasmall Skyrmion Lattices
arXiv:2512.10320 · doi:10.1002/advs.202509786
Abstract
Magnetic skyrmions with ultrasmall nanometric dimensions hold significant promise for next-generation high-density spintronic devices. Direct real-space imaging of these topological spin textures is critical for elucidating their emergent properties at the nanoscale. Here, we present Lorentz transmission electron microscopy studies of nanometric skyrmion lattices in B20-structured Mn0.5Fe0.5Ge crystals using Fresnel mode. According to conventional chiral discrimination methods relying on static bright-dark contrast, we demonstrate an abnormal periodic chiral-reversal phenomenon retrieved through the transport of intensity equation analysis of defocus-dependent Fresnel images. Through systematic off-axis electron holography experiments and numerical simulations, we attribute these chiral misinterpretations to the sinusoidal modulation mechanism of the contrast transfer functionthat correlates with both defocus values and skyrmion dimensions. Our findings establish quantitative limitations of conventional Fresnel contrast analysis for ultrasmall skyrmions while revealing fundamental insights into defocus-mediated phase-to-intensity conversion processes in nanoscale magnetic imaging.
Published in Advanced Science
References in corpus (15)
- Advances in the Physics of Magnetic Skyrmions and Perspective for Technology
- Physical foundations and basic properties of magnetic skyrmions
- Magnetic Skyrmion Bundles and Their Current-Driven Dynamics
- Spin-orbit torque-driven skyrmion dynamics revealed by time-resolved X-ray microscopy
- Electrical manipulation of skyrmions in a chiral magnet
- Computing and Memory Technologies based on Magnetic Skyrmions
- Two-dimensional characterization of three-dimensional magnetic bubbles in FeSn nanostructures
- Gate-controlled skyrmion and domain wall chirality
- Stable skyrmion bundles at room temperature and zero magnetic field in a chiral magnet
- Combined Magnetic Imaging and Anisotropic Magnetoresistance Detection of Dipolar Skyrmions
- Sewing skyrmion and antiskyrmion by quadrupole of Bloch points
- The dynamic chirality flips of Skyrmion bubbles
- Deterministic generation of skyrmions and antiskyrmions by electric current
- Creating and Deleting a Single Dipolar Skyrmion by Surface Spin Twists
- Magnetic Skyrmion Lattice by Fourier Transform Method