Aluminum plasmonic nanoantennas.
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Summary
This approach allows us to image the local density of optical states (LDOS) of Al nanorod antennas with a spatial resolution less than 20 nm and to identify the radiative modes of these nanostructures across the visible and into the UV spectral range.
- Type
- article
- Published
- 2012-10-22
- Cited by
- 561
- References
- 27
- OpenAlex
- https://openalex.org/W1971743333
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:207677725
Keywords
Plasmon, Cathodoluminescence, Nanorod, Finite-difference time-domain method, Materials science
References
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- Nano-optics from sensing to waveguiding
- Optical properties of small inorganic and organic metal particles
- Local density of states, spectrum, and far-field interference of surface plasmon polaritons probed by cathodoluminescence
- Aluminum Nanoparticles as Substrates for Metal-Enhanced Fluorescence in the Ultraviolet for the Label-Free Detection of Biomolecules
- Metallic adhesion layer induced plasmon damping and molecular linker as a nondamping alternative.
- Aluminum nanoparticles for plasmon-improved coupling of light into silicon
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- Deep ultraviolet plasmon resonance in aluminum nanoparticle arrays.
- Mass-producible and efficient optical antennas with CMOS-fabricated nanometer-scale gap.
- Fluorescence enhancement with deep-ultraviolet surface plasmon excitation.
- Silicon nanoparticles as Raman scattering enhancers.
- How an oxide shell affects the ultraviolet plasmonic behavior of Ga, Mg, and Al nanostructures.
- Plasmonics Resonance Enhanced Active Photothermal Effects in Aluminum Nanoenergetics for Propulsion Applications
- Enhancement of Molecular Fluorescence in the UV Spectral Range Using Aluminum Nanoantennas
- Aluminum Nanoarrays for Plasmon-Enhanced Light Harvesting.
- Tuning Localized Surface Plasmon Resonance in Scanning Near-Field Optical Microscopy Probes.
- In situ X-ray diffraction for millisecond-order dynamics of BaZrO3 nanoparticle formation in supercritical water
- Aluminum Nanoantenna Complexes for Strong Coupling between Excitons and Localized Surface Plasmons.
- Colloidal quantum dot materials for infrared optoelectronics
- Plasmonic nanostructures for physical and biological applications
- Surface plasmon-enhanced fluorescence cell imaging in deep-UV region
- Narrowband Photodetection in the Short-wavelength Infrared with a Plasmon-induced Hot Electron Device
- Slant-gap plasmonic nanoantennas for optical chirality engineering and circular dichroism enhancement.
- Integrated optics for nano-scale energy-assisted magnetic recording (EAMR) applications
- Rhodium nanoparticles for ultraviolet plasmonics.
- Sui Generis Cerulean Fluorescence from YAG:Ce by Selective Plasmonic Mode Coupling with Silver Nanorods
- Towards deep-UV surface-enhanced resonance Raman spectroscopy of explosives: ultrasensitive, real-time and reproducible detection of TNT.
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