Magnetic bubble mobility in epitaxial Sm0.4Y2.6Ga1.2Fe3.8O12 films
- 1 February 1974
- journal article
- conference paper
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 45 (2) , 939-942
- https://doi.org/10.1063/1.1663343
Abstract
Extensive measurements of magnetic bubble mobility in epitaxial Sm0.4Y2.6Ga1.2Fe3.8O12 films have shown that is is possible to obtain a uniformity of better than ± 15% over a 1.1 × 1.1‐cm area and an average mobility of 270 cm/sec Oe. This uniformity was obtained in films which were grown under carefully controlled conditions, whereas a variation in the mobility from 170 to 510 cm/sec Oe was observed in other films where the growth parameters were not as carefully controlled. The possibility that the growth rate and growth temperature might influence the mobility was investigated, but no correlation was observed. However, annealing at 1200°C was found to have a beneficial effect on the mobility when the mobility was abnormally low in the as‐grown state. The mobility was also observed to increase by a factor of ∼ 2 over the temperature range 25–80°C, and proton implantation at a dosage sufficient to suppress hard bubbles did not materially affect the mobility. The value of the damping parameter obtained from measurements of wall mobility was found to be in good agreement with the value obtained from measurements of the microwave resonance linewidth.This publication has 22 references indexed in Scilit:
- Technique for controlling the properties of magnetic garnet filmsIEEE Transactions on Magnetics, 1973
- Controlled adjustment of bubble domain parameters in epitaxial garnet films by thermal annealingJournal of Applied Physics, 1973
- The temperature dependence of the anisotropy field and coercivity in epitaxial films of mixed rare-earth iron garnetsJournal of Applied Physics, 1973
- Measurement of magnetic bubble mobility in epitaxial garnet filmsApplied Physics Letters, 1972
- Characteristics of Temperature-Stable Eu-Based Garnet Films for Magnetic Bubble ApplicationsJournal of Applied Physics, 1972
- Domain Wall Mobility Enhancement Through X-Ray Irradiation Compared With Thermal AnnealingJournal of Applied Physics, 1972
- Annealing-Induced Mobility Changes in Rare-Earth OrthoferriteJournal of Applied Physics, 1972
- Garnet compositions for bubble domain systems utilizing stress-induced uniaxial anisotropyMaterials Research Bulletin, 1971
- Domain Wall Dynamics Measured Using Cylindrical DomainsJournal of Applied Physics, 1970
- The influence of erbium doping on the velocity of magnetic domain-wall propagation in yttrium iron garnetJournal of Physics C: Solid State Physics, 1968