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[PDF] Top 20 Optical interactions in plasmonic nanostructures

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Optical interactions in plasmonic nanostructures

Optical interactions in plasmonic nanostructures

... plasmonic nanoparticles, the literature suggests volume fraction of 10 ~ 20% would be the upper limit where the effective medium theory begins to break down [49,81]. In a study of collective magnetic resonance ... See full document

27

Optical characterisation of plasmonic nanostructures on planar substrates using second harmonic generation

Optical characterisation of plasmonic nanostructures on planar substrates using second harmonic generation

... Plasmonic nanostructures are being used as building blocks for a variety of nanophotonics ...to interactions with the ...the interactions can be so strong that the time varying charge ... See full document

13

Parallel FDTD Electromagnetic Simulation of Dispersive Plasmonic Nanostructures and Opal Photonic Crystals in the Optical Frequency Range

Parallel FDTD Electromagnetic Simulation of Dispersive Plasmonic Nanostructures and Opal Photonic Crystals in the Optical Frequency Range

... of Tables 4.1, 4.2 and 4.3. As a general feature, short-wavelength radiation is scattered in the forward direction more than long-wavelength radiation. Spheres with larger size tend to scatter more in the forward ... See full document

136

Subwavelength core/shell cylindrical nanostructures for novel plasmonic and metamaterial devices

Subwavelength core/shell cylindrical nanostructures for novel plasmonic and metamaterial devices

... original optical properties, which are hard to obtain from the spherical core/shell nanostruc- ...of plasmonic material NWs to support strongly localized surface plasmon modes has led to the development of ... See full document

13

Optical Properties of Plasmonic Mirror Image Nanoepsilon

Optical Properties of Plasmonic Mirror Image Nanoepsilon

... two nanostructures are sufficiently close to each other. Various plasmonic dimers have been investi- gated, including nanosphere dimers [31], nanodisk dimers [32], and nanorod dimers ...the optical ... See full document

13

PLASMONIC LAYERED NANOSTRUCTURES FOR DEEP UV-UV BIOSENSING

PLASMONIC LAYERED NANOSTRUCTURES FOR DEEP UV-UV BIOSENSING

... strong plasmonic active material which supports long-lived LSPRs with high optical cross-sections tunable over a wide energy range, deep into the UV, for sensing applications in the shortest wavelength ... See full document

9

Biomacromolecular stereostructure mediates mode hybridization in chiral plasmonic nanostructures

Biomacromolecular stereostructure mediates mode hybridization in chiral plasmonic nanostructures

... from plasmonic nanostructures and the approach to data analysis will be brie fl y discussed; more detailed discussion can be found ...a plasmonic nanostructure in which high-intensity fi elds with ... See full document

9

Optical energy transfer of gold plasmonic antennas

Optical energy transfer of gold plasmonic antennas

... gold nanostructures using FIB milling with typical smallest fea- ture sizes of ten to twenty nanometers, a smart milling sequence has to be ...the Optical Sciences ... See full document

62

An engineered nano-plasmonic biosensing surface for colorimetric and SERS detection of DNA-hybridization events

An engineered nano-plasmonic biosensing surface for colorimetric and SERS detection of DNA-hybridization events

... whose optical and plasmonic properties can be altered molecularly-mediated nanoparticle binding ...and plasmonic tuning of arbitrary nanostructures for high-sensitivity colorimetric and SERS ... See full document

6

Hybrid FIB milling strategy for the fabrication of plasmonic nanostructures on semiconductor substrates

Hybrid FIB milling strategy for the fabrication of plasmonic nanostructures on semiconductor substrates

... measuring optical transmission spectra of the plas- monic crystals as described by Bouillard et ...for plasmonic crystals on high-refractive index substrates ...The plasmonic crystal transmission is ... See full document

5

Plasmonic Colour Printing by Light Trapping in Two Metal Nanostructures

Plasmonic Colour Printing by Light Trapping in Two Metal Nanostructures

... all-metal nanostructures [24,25], with nanohole arrays [26], nanoantenna arrays [1,27–30] or randomly distributed nanoparticles [18,31,32] on top of a back-reflector or on transparent ...substrates. ... See full document

15

Engineering DNA binding sites to assemble and tune plasmonic nanostructures

Engineering DNA binding sites to assemble and tune plasmonic nanostructures

... surface-based plasmonic applications has been ...tune plasmonic surface ...coupled plasmonic bowties with molecularly controlled photonic ...its optical response, the DNA trigger reconfigures ... See full document

24

Nanoplasmonic discrimination of organic solvents using a bimetallic optical tongue

Nanoplasmonic discrimination of organic solvents using a bimetallic optical tongue

... the nanostructures to acetone, methanol (MeOH), ethanol (EtOH), isopropyl alcohol (IPA) in varying concentrations (volume per volume (v/v)) in ...two plasmonic peaks obtained from one measurement, combined ... See full document

8

Synthesis and characterization of gold and gold-cuprous oxide nanostructures

Synthesis and characterization of gold and gold-cuprous oxide nanostructures

... of plasmonic Au NSs with shape-dependent optical properties comes from the choice of another cationic ligand, methyltrioctylammonium chloride/Aliquat 336, having superior properties while altering the ... See full document

45

Low-Power Far Field Nanonewton Optical Force Trapping Based on Far-Field Nanofocusing Plasmonic Lens

Low-Power Far Field Nanonewton Optical Force Trapping Based on Far-Field Nanofocusing Plasmonic Lens

... near-field optical manipulation techniques have been developed; these techniques exploit the strong optical forces that can be generated in the near field of surface plasmon (SP) structures ...Metallic ... See full document

8

Plasmonic Pd Nanoparticle  and Plasmonic Pd Nanorod Decorated BiVO4 Electrodes with Enhanced Photoelectrochemical Water Splitting Efficiency Across Visible NIR Region

Plasmonic Pd Nanoparticle and Plasmonic Pd Nanorod Decorated BiVO4 Electrodes with Enhanced Photoelectrochemical Water Splitting Efficiency Across Visible NIR Region

... via plasmonic effect has received much attention ...metal nanostructures as well as the dielectric constant of the surrounding environment ...The plasmonic metal nanostructures localize the ... See full document

8

Plasmonic enhancements of photoluminescence in hybrid Si nanostructures with Au fabricated by fully top down lithography

Plasmonic enhancements of photoluminescence in hybrid Si nanostructures with Au fabricated by fully top down lithography

... metallic nanostructures, such as remarkable enhancements of the intensity of photoluminescence (PL) in semiconductor nanostruc- tures, are very attractive because optical responses of the semiconductor ... See full document

5

Tunable random lasing behavior in plasmonic nanostructures

Tunable random lasing behavior in plasmonic nanostructures

... Metal nanoparticles (MNPs) play an important role in spectral narrowing. MNPs have much larger scat- tering cross section than that of dielectric NPs with the same dimensions. MNPs are enriched with their unique property ... See full document

8

Light manipulation by plasmonic nanostructures

Light manipulation by plasmonic nanostructures

... 1. W. Liu, A. A. Sukhorukov, A. E. Miroshnichenko, C. G. Poulton, Z. Y. Xu, D. N. Neshev, and Yu. S. Kivshar, “Complete spectral gap in coupled hollow metallic waveguides,” The 19th Australian Institute of Physics ... See full document

13

Probing the out of plane optical response of plasmonic nanostructures using spectroscopic ellipsometry

Probing the out of plane optical response of plasmonic nanostructures using spectroscopic ellipsometry

... multipolar features are observed in Fig. 3, but a modification of the position of the resonances cannot be excluded. It was found to be necessary to introduce a scaling factor I in Eq. (10) to reproduce the measured peak ... See full document

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