Plasmonic interactions between a perforated gold film and a thin gold film

Based on the finite difference time domain method, we investigated theoretically the optical properties and the plasmonic interactions between a gold film perforated with periodic sub-wavelength holes and a thin gold film. We showed that the plasmon resonant energies and intensities depend strongly...

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Published inChinese physics B Vol. 19; no. 12; pp. 537 - 543
Main Author 周昕 李宏建 谢素霞 付少丽 徐海清 吴金军
Format Journal Article
LanguageEnglish
Published IOP Publishing 01.12.2010
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ISSN1674-1056
2058-3834
DOI10.1088/1674-1056/19/12/127806

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Abstract Based on the finite difference time domain method, we investigated theoretically the optical properties and the plasmonic interactions between a gold film perforated with periodic sub-wavelength holes and a thin gold film. We showed that the plasmon resonant energies and intensities depend strongly on the thicknesses of the two films and the lattice constant. Based on the distributions of normal electric field component Ez, tangential electric field component Ey and total energy, we showed that the optical transmission is due to the collaboration of the localized waveguide resonance, the surface plasmon resonance and the coupling of the fiat-surface plasmon of the two layers.
AbstractList Based on the finite difference time domain method, we investigated theoretically the optical properties and the plasmonic interactions between a gold film perforated with periodic sub-wavelength holes and a thin gold film. We showed that the plasmon resonant energies and intensities depend strongly on the thicknesses of the two films and the lattice constant. Based on the distributions of normal electric field component Ez, tangential electric field component Ey and total energy, we showed that the optical transmission is due to the collaboration of the localized waveguide resonance, the surface plasmon resonance and the coupling of the fiat-surface plasmon of the two layers.
Author 周昕 李宏建 谢素霞 付少丽 徐海清 吴金军
AuthorAffiliation College of Physics Science and Technology, Central South University, Changsha 410083, China College of Materials Science and Engineering, Central South University, Changsha 410083, China
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Notes plasmonic interaction, localized waveguide resonance, surface plasmon resonance, surface plasmon coupling
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Snippet Based on the finite difference time domain method, we investigated theoretically the optical properties and the plasmonic interactions between a gold film...
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SubjectTerms 共振能量
时域有限差分法
相互作用
表面等离子体共振
Title Plasmonic interactions between a perforated gold film and a thin gold film
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