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Electroless plated maghemite for three-dimensional magneto photonic crystals
Author(s) -
Shinichiro Mito,
Takuya Kawashima,
Takuma Kawaguchi,
Junji Sasano,
Hiroyuki Takagi,
Mitsuteru Inoue
Publication year - 2016
Publication title -
aip advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.421
H-Index - 58
ISSN - 2158-3226
DOI - 10.1063/1.4973694
Subject(s) - maghemite , photonic crystal , materials science , faraday effect , photonics , magnetite , plating (geology) , optoelectronics , band gap , magnetic field , metallurgy , physics , quantum mechanics , geophysics , geology
Three-dimensional magneto photonic crystals (3D-MPCs) are promising material for manipulating light in 3D space. In this study, we fabricated 3D-MPC that is filling the air-gap of opal photonic crystal with magnetic material by electroless plating. The electroless plating is an attractive film-forming method which provides magnetic material films on various substrates in aqueous solution at 24-90 °C. As magnetic material for filling the air-gap, maghemite (γ-Fe2O3) film was plated in opal photonic crystal. The plated maghemite film showed a Faraday rotation of 0.6 deg./μm at 440 nm and significantly lower absorption than magnetite. The plated opal showed photonic band gap and magneto-optic response. Faraday rotation of the plated opal was enhanced at the band edge. The photonic band gap and the Faraday rotation spectra were changed as a function of incident angle of light. Electroless plating of maghemite could be promising technique for fabricating 3D-MPCs

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