Spatially reconfigurable antiferromagnetic states in topologically rich free-standing nanomembranes
University of Oxford (2024)
Abstract:
The datasets included herein contain experimental results (Scanning transmission X-ray microscopy, X-ray diffraction, electron diffraction, confocal microscopy etc.) and related theoretical analysis for the investigation of antiferromagnetic topological textures in freestanding membranes. The steps used in the obtaining, reducing and analysing the datasets can be found in the Methods and Supplementary Information sections of the published manuscript.Holographic imaging of antiferromagnetic domains with in-situ magnetic field
(2023)
Revealing Emergent Magnetic Charge in an Antiferromagnet with Diamond Quantum Magnetometry
(2023)
Spatially reconfigurable topological textures in freestanding antiferromagnetic nanomembranes
(2023)
Unravelling a new many-body large-hole polaron in a transition metal oxide that promotes high photocatalytic activity
NPG Asia Materials Springer Nature 14:1 (2022) 19