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High-performance thin-film garnet materials for Magneto-Optic and nanophotonic applications

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4 Author(s)
Vasiliev, M. ; Electron Sci. Res. Inst., Edith Cowan Univ., Perth, WA, Australia ; Nur-E-Alam, M. ; Kotov, V.A. ; Alameh, K.

Since the 1960's, Magneto-optic (MO) garnet materials have been studied extensively. These materials can possess world-record MO performance characteristics in terms of Faraday rotation and optical quality. Among the rear-earth-doped garnets, the Bi-substituted iron garnet is the best candidate for use as a functional material in different integrated-optics, imaging/image processing applications and also in forward-looking applications e.g. the design of metamaterials with non-reciprocal properties. We have established a set of technologies for fabricating ferrimagnetic garnet films of type (BiDy)3(FeGa)5O12 and also garnet-oxide nanocomposite (BiDy)3(FeGa)5O12 : Bi2O3 layers possessing record-high MO quality across the visible spectral range using RF-magnetron sputtering and oven annealing. Our MO garnet films possess excellent optical and magnetic properties, which make them very attractive and promising for a large range of optoelectronic, photonics-related and MO imaging applications.

Published in:

Optoelectronic and Microelectronic Materials and Devices (COMMAD), 2010 Conference on

Date of Conference:

12-15 Dec. 2010

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