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- W2068002830 abstract "Abstract Measurements of the derivative of magnetization with time (d M /d t ) versus the driving field ( H ) were performed on melt-spun Co 74 Fe 6 B 20 and Fe 20 Ni 40 B 18 Si 2 amorphous ribbons by the induction method. Measurements of the peak shifts in d M /d t versus H with an electrical current ( J ) flowing through the ribbon showed that domain walls in nonmagnetostrictive Co 74 Fe 6 B 20 samples were pinned mainly at the ribbon surfaces. The experimental methods employed can show us which surface contains stronger pinning centres. It was found that domain wall pinning at the ribbon free surface is stronger than the pinning at the contact surface. This excludes surface roughness as the origin of the pinning. Detachment of domain walls from pinning sites is triggered either from the free or from the contact surface, depending on the direction and magnitude of J . This further supports a new model proposed to explain the effects of J on magnetization processes in the ribbon, and shows that the domain walls in our samples are flexible. The triggering of domain walls plays an important role in magnetization processes for our samples. For magnetostrictive Fe 40 Ni 40 B 18 Si 2 samples, the strength of the volume pinning of domain walls is comparable to the strength of the surface pinning." @default.
- W2068002830 created "2016-06-24" @default.
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- W2068002830 date "1993-05-01" @default.
- W2068002830 modified "2023-10-14" @default.
- W2068002830 title "Surface and volume pinning of domain walls in amorphous ribbons" @default.
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- W2068002830 doi "https://doi.org/10.1016/0304-8853(93)90012-q" @default.
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