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- W2016720674 abstract "A thin Ni-Fe film, having a uniaxial magnetic energy of the form EK = K sin2θ, usually exists as a single domain. If a magnetic field of sufficient magnitude is placed perpendicular to the easy axis of magnetization and then removed, the film splits into a large number of 180° domains. When this simple multidomain structure occurs, it is theoretically possible to excite two ferromagnetic resonance modes by applying a small magnetic field perpendicular to the easy axis. The first of these, a low-frequency mode (0–10 Mc/sec) is excited by an rf field perpendicular to the domain walls; and the second, a high-frequency mode (0–25 Gc/sec) is excited by an rf field parallel to the domain walls. The high-frequency mode has been observed in a number of films having anisotropy fields from 3–5 Oe. The experimental results are compared with theoretical relations for frequency as a function of applied field. In addition, it is possible to estimate the domain wall separation from measurements of the high-frequency mode. These measurements indicate that typical domain widths range from 30 to 50 μ. A difference is observed in the position of the absorption peak when measured in an increasing field than when measured in a decreasing field. This hysteresis is explained by the Bloch-Néel wall transition theory which was used to explain the constricted M-H loops. Attempts to observe the low-frequency mode were not successful." @default.
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- W2016720674 date "1964-05-01" @default.
- W2016720674 modified "2023-09-23" @default.
- W2016720674 title "Ferromagnetic Resonance in Multidomain Thin Films" @default.
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- W2016720674 doi "https://doi.org/10.1063/1.1713646" @default.
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