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Direct observation of tensile-strain-induced nanoscale magnetic hardening.


ABSTRACT: Magnetoelasticity is the bond between magnetism and mechanics, but the intricate mechanisms via which magnetic states change due to mechanical strain remain poorly understood. Here, we provide direct nanoscale observations of how tensile strain modifies magnetic domains in a ferromagnetic Ni thin plate using in situ Fresnel defocus imaging, off-axis electron holography and a bimetallic deformation device. We present quantitative measurements of magnetic domain wall structure and its transformations as a function of strain. We observe the formation and dissociation of strain-induced periodic 180° magnetic domain walls perpendicular to the strain axis. The magnetization transformation exhibits stress-determined directional sensitivity and is reversible and tunable through the size of the nanostructure. In this work, we provide direct evidence for expressive and deterministic magnetic hardening in ferromagnetic nanostructures, while our experimental approach allows quantifiable local measurements of strain-induced changes in the magnetic states of nanomaterials.

SUBMITTER: Kong D 

PROVIDER: S-EPMC10322833 | biostudies-literature | 2023 Jul

REPOSITORIES: biostudies-literature

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Direct observation of tensile-strain-induced nanoscale magnetic hardening.

Kong Deli D   Kovács András A   Charilaou Michalis M   Zheng Fengshan F   Wang Lihua L   Han Xiaodong X   Dunin-Borkowski Rafal E RE  

Nature communications 20230705 1


Magnetoelasticity is the bond between magnetism and mechanics, but the intricate mechanisms via which magnetic states change due to mechanical strain remain poorly understood. Here, we provide direct nanoscale observations of how tensile strain modifies magnetic domains in a ferromagnetic Ni thin plate using in situ Fresnel defocus imaging, off-axis electron holography and a bimetallic deformation device. We present quantitative measurements of magnetic domain wall structure and its transformati  ...[more]

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