Resonant magneto-optical Kerr effect induced by hybrid plasma modes in ferromagnetic nanovoids  被引量:1

Resonant magneto-optical Kerr effect induced by hybrid plasma modes in ferromagnetic nanovoids

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作  者:张霞 石磊 李晶 夏云杰 周仕明 

机构地区:[1]Shandong Province Key Lab of Laser Polarization and Information, Qufu Normal University [2]Surface Physics State Laboratory and Department of Physics, Fudan University [3]Department of Optical Science and Engineering, Fudan University [4]Department of Physics, Tongji University

出  处:《Chinese Physics B》2017年第11期489-497,共9页中国物理B(英文版)

基  金:Project supported by the Natural Science Foundation of Shandong Province,China(Grant No.ZR2015AM024);the Doctoral Research Started Funding of Qufu Normal University,China(Grant No.BSQD20130152)

摘  要:With nanovoids buried in Co films, resonant structures were observed in spectra of polar magneto-optical Kerr effect(MOKE), where both a narrow bandwidth and high intensity were acquired. Through changing the thickness of Co films and the lattice of voids, different optical modes were introduced. For a very shallow array of voids, the resonant MOKE was induced by Ag plasma edge resonance, for deeper ones, hybrid plasma modes, such as void plasmons in the voids, surface lattice plasmons between the voids, and the co-action of them, etc. resulted in resonant MOKE. We found that resonant MOKE resulted from the void plasmons resonance which possesses the narrowest bandwidth for the lowest absorption of voids. The simulated electromagnetic field(EF) distribution consolidated different effects of these three optical modes on resonant MOKE modulation. Such resonant polar MOKE possesses high sensitivity, which might pave the way to on-chip MO devices.With nanovoids buried in Co films, resonant structures were observed in spectra of polar magneto-optical Kerr effect(MOKE), where both a narrow bandwidth and high intensity were acquired. Through changing the thickness of Co films and the lattice of voids, different optical modes were introduced. For a very shallow array of voids, the resonant MOKE was induced by Ag plasma edge resonance, for deeper ones, hybrid plasma modes, such as void plasmons in the voids, surface lattice plasmons between the voids, and the co-action of them, etc. resulted in resonant MOKE. We found that resonant MOKE resulted from the void plasmons resonance which possesses the narrowest bandwidth for the lowest absorption of voids. The simulated electromagnetic field(EF) distribution consolidated different effects of these three optical modes on resonant MOKE modulation. Such resonant polar MOKE possesses high sensitivity, which might pave the way to on-chip MO devices.

关 键 词:magneto-optical Kerr effect surface plasma polariton nanocavity mode surface lattice resonance 

分 类 号:O53[理学—等离子体物理]

 

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