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SrGa0.7Co0.3O3−δ perovskite-cobalt oxide-metal nanocomposite films: magnetic and optical properties

Two-phase nanocomposite films consisting of metallic Co nanoparticles below 50 nm diameter in a perovskite matrix were grown by pulsed laser deposition onto (LaAlO3)0.3(Sr2AlTaO6)0.7 (LSAT) and silicon substrates from a target of SrGa0.73Co0.27O3. The particles made up about 6% by volume of the film...

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Bibliographic Details
Published in:Nanotechnology 2015-03, Vol.26 (11)
Main Authors: Sun, Xue Yin, Veis, Martin, Kousal, Jaroslav, Jesenska, Eva, Zhang, Chen, Aimon, Nicolas M, Goto, Taichi, Onbasli, Mehmet C, Kim, Dong Hun, Choi, Hong Kyoon, Ross, C A
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Language:English
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Summary:Two-phase nanocomposite films consisting of metallic Co nanoparticles below 50 nm diameter in a perovskite matrix were grown by pulsed laser deposition onto (LaAlO3)0.3(Sr2AlTaO6)0.7 (LSAT) and silicon substrates from a target of SrGa0.73Co0.27O3. The particles made up about 6% by volume of the film and were present within the film and at the substrate interface. The saturation magnetization of the film was up to 85 emu cm−3 at 80 nm thickness and the Faraday rotation (FR) tracked the out-of-plane hysteresis loop, reaching 3000 deg cm−1 at 10 kOe for 1550 nm wavelength. The magneto-optical figure of merit defined as FR divided by optical absorption was 0.04-0.06 deg dB−1 due to the high optical absorption of the Co particles.
ISSN:0957-4484
1361-6528
DOI:10.1088/0957-4484/26/11/115701