Magneto-optical characteristics of Co, Ti-substituted barium hexaferrite films deposited by the dip-coating method

Pure and Co, Ti-substituted hexagonal barium ferrite (BaFe12O19, BaM) films were prepared by the dip-coating method from alkoxides. After repeated dipping, drying and calcining at 500°C for about 15 minutes in an oxygen atmosphere, polycrystalline films with a thickness of 1–1.8 μm on SiO2 substrate...

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Veröffentlicht in:Journal of sol-gel science and technology 1997-02, Vol.8 (1-3), p.947-951
Hauptverfasser: Buršík, J., Šimša, Z., Čerňanský, M.
Format: Artikel
Sprache:eng
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Zusammenfassung:Pure and Co, Ti-substituted hexagonal barium ferrite (BaFe12O19, BaM) films were prepared by the dip-coating method from alkoxides. After repeated dipping, drying and calcining at 500°C for about 15 minutes in an oxygen atmosphere, polycrystalline films with a thickness of 1–1.8 μm on SiO2 substrates were obtained. Spectral dependencies of the Faraday rotation and the optical transmission of BaCoxTixFe12−2xO19(0≤x≤0.8) films were measured in the range from 500 to 2500 nm at room temperature. The absorption coefficient did not display much structure, but specific Faraday rotation spectra of Co, Ti-ferrite films showed local maxima at 720, 1475 and 1750 nm. At those wavelengths, the magneto-optical figure of merit attains its maximum values. For comparison of the crystallization and magnetic properties, Ba(CoTi)xFe12−2xO19 (x=0.9) powder has also been prepared by the sol-gel method.
ISSN:0928-0707
1573-4846
DOI:10.1007/BF02436966