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- W2035214123 abstract "Constricted magnetization hysteresis loops were observed at 4.2°K in tapes of spectroscopically pure Ni, which were prepared by cold-rolling with a reduction in thickness of 95% when the driving field was applied perpendicularly to the rolling plane. The thickness of these samples was 0.003 cm. A pronounced anisotropy with respect to the rolling axis was detected in the slow relaxation effects when hysteresis loops of the magnetoresistance effect were displayed in hard-rolled samples at 20.3° and 4.2°K. The loops of the magnetization and of the magnetoresistance effect were cycled with triangular waveform fields, with very low frequencies varying from 0.005 to 1 cps when the drive amplitude changes from 0.5 to 7.2 kOe. The lower the frequency the larger the observed constriction of the loops. Because of the relaxation effects, one assumes that the hard-rolled metal has an intrinsic structure, which may be compared with that of thin films with densely spaced domain walls. In view of the theory of double walls in thin films, we suggest an interpretation for the magnetization process in the laminated material, supposing a mechanism of stabilization of domain double-walls of different types. This mechanism seems to be responsible for the observed constricted magnetization loops, as well as for the anomalous hysteresis of the magnetoresistance appearing in some samples at 4.2°K." @default.
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- W2035214123 date "1967-03-01" @default.
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- W2035214123 title "Origin of Constricted Magnetization Loops in Hard‐Rolled Nickel at Low Temperatures" @default.
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