Partial Rotation in Permalloy Films
- 1 October 1961
- journal article
- research article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 32 (10) , 1959-1963
- https://doi.org/10.1063/1.1728270
Abstract
Magnetization reversal at an angle to the easy direction has been studied on Permalloy films with different values of coercive force Hc and anisotropy field HK. The hysteresis properties show that ``inverted'' films (Hc>HK) do not represent a special case, but that every film exhibits inversion in a certain sector of field direction. In the inversion sector, two critical field values are observed. The corresponding Bitter patterns make it evident that the lower critical field is due to a partial rotation process which is accompanied by a splitting of the film into many fine domains, whilst the higher one is due to wall motion. The observed processes can be understood qualitatively if the dispersion of the local values of the anisotropy field and anisotropy direction, as well as the internal exchange and stray field coupling are taken into account.This publication has 9 references indexed in Scilit:
- Anisotropy and Inversion in Permalloy FilmsJournal of Applied Physics, 1960
- Measurement of Crystallite Size and Strain of Electroplated Films [Letter to the Editor]IBM Journal of Research and Development, 1960
- Determination of Magnetization Distribution in Thin Films Using Electron MicroscopyJournal of Applied Physics, 1960
- Observations Made on Domain Walls in Thin FilmsJournal of Applied Physics, 1959
- Some Observations on Evaporated Permalloy FilmsJournal of Applied Physics, 1959
- Anisotropy in Permalloy FilmsJournal of Applied Physics, 1959
- Magnetization Reversal by Rotation and Wall Motion in Thin Films of Nickel-Iron Alloys†Journal of Electronics and Control, 1959
- Preparation of Thin Magnetic Films and Their PropertiesJournal of Applied Physics, 1955
- A mechanism of magnetic hysteresis in heterogeneous alloysPhilosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences, 1948