Partial funding for Open Access provided by the UMD Libraries' Open Access Publishing Fund.The tunability of the longitudinal localized surface plasmon resonances (LSPRs) of metallic nanoarcs is demonstrated with key relationships identified between geometric parameters of the arcs and their resonances in the infrared. The wavelength of the LSPRs is tuned by the mid-arc length of the nanoarc. The ratio between the attenuation of the fundamental and second order LSPRs is governed by the nanoarc central angle. Beneficial for plasmonic enhancement of harmonic generation, these two resonances can be tuned independently to obtain octave intervals through the design of a non-uniform arc-width profile. Because the character of the fundamental LSPR...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
Light incident on a metallic structure excites collective oscillations of electrons termed as plasmo...
The tunability of the longitudinal localized surface plasmon resonances (LSPRs) of metallic nanoarcs...
Localized surface plasmons are collective electron oscillations in metallic nanostructures at optica...
One of the most remarkable nano-scale phenomenon with metals atoptical wavelengths is the appear-anc...
Using Green's matrix method and resonance capacity concept, surface plasmon resonances of metal...
It is demonstrated that the newly proposed nano-sinusoid shape has more resonance wavelength tunabil...
Metal nanoarchitectures producing optical responses in the visible and near-infrared form the founda...
In this paper, the surface plasmon resonance (SPR) wavelength of arrangement-dependent gol...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
The tunable plasmon resonances of nanostructures with sharp features play an important role in the s...
International audienceThe plasmonic nanostructures are widely used to design sensors with improved c...
Perfectly ordered nanoparticle arrays are fabricated on large-area substrates (>cm<sup>2</sup>) <i>v...
A new nano-sinusoid shape has recently been proposed, which offers the advantage of more resonance w...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
Light incident on a metallic structure excites collective oscillations of electrons termed as plasmo...
The tunability of the longitudinal localized surface plasmon resonances (LSPRs) of metallic nanoarcs...
Localized surface plasmons are collective electron oscillations in metallic nanostructures at optica...
One of the most remarkable nano-scale phenomenon with metals atoptical wavelengths is the appear-anc...
Using Green's matrix method and resonance capacity concept, surface plasmon resonances of metal...
It is demonstrated that the newly proposed nano-sinusoid shape has more resonance wavelength tunabil...
Metal nanoarchitectures producing optical responses in the visible and near-infrared form the founda...
In this paper, the surface plasmon resonance (SPR) wavelength of arrangement-dependent gol...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
The tunable plasmon resonances of nanostructures with sharp features play an important role in the s...
International audienceThe plasmonic nanostructures are widely used to design sensors with improved c...
Perfectly ordered nanoparticle arrays are fabricated on large-area substrates (>cm<sup>2</sup>) <i>v...
A new nano-sinusoid shape has recently been proposed, which offers the advantage of more resonance w...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
Light incident on a metallic structure excites collective oscillations of electrons termed as plasmo...