A Hybridization Model for the Plasmon Response of Complex Nanostructures
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Summary
A simple and intuitive picture that describes the plasmon response of complex nanostructures of arbitrary shape is presented, an electromagnetic analog of molecular orbital theory, that can be understood as the interaction or "hybridization" of elementary plasmons supported by nanostructure of elementary geometries.
- Type
- article
- Published
- 2003-10-17
- Cited by
- 3,692
- References
- 21
- OpenAlex
- https://openalex.org/W2020093054
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:44442269
Keywords
Nanoshell, Plasmon, Nanostructure, Surface plasmon, Physics
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- Detection and spectroscopy of gold nanoparticles using supercontinuum white light confocal microscopy.
- Metamaterials: a new frontier of science and technology.
- Excitation and tuning of higher-order Fano resonances in plasmonic oligomer clusters.
- Theoretical Analysis the Optical Properties of Multi-coupled Silver Nanoshell Particles
- Localized plasmon resonances of bimetallic AgAuAg nanorods.
- Nanomedicine: Tiny Particles and Machines Give Huge Gains
- Plasmonic Fano resonances in nanohole quadrumers for ultra-sensitive refractive index sensing.
- Boosting Fano resonances in single layered concentric core-shell particles.
- Local refractive index sensitivity of gold nanodisks.
- Enhancement of photothermal heat generation by metallodielectric nanoplasmonic clusters.
- Shaping the nonlinear near field
- Linear and nonlinear optical properties of hybrid metallic–dielectric plasmonic nanoantennas
- Green Energy and Technology
- Bottom-up organisation of metallic nanoparticles for metamaterials applications
- Core–Shell Plasmonic Nanohelices
- Magnetic Fano resonance of heterodimer nanostructure by azimuthally polarized excitation.
- Plasmonic sphere-on-plane systems with semiconducting polymer spacer layers.
- In-plane coherent control of plasmon resonances for plasmonic switching and encoding
- Plasmon rulers as dynamic molecular rulers in enzymology.
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