International audienceWe give a simple tool for the optimization of the dimensions of a metallic nanostrip illuminated at a given wavelength under normal incidence, to get a maximum of the electromagnetic field amplitude in the nanostrip. We propose an analytical formula that gives the widths and heights of the series of nanostrips that produce field enhancement. The validity of the analytical formula is checked by using the finite element method. This design of a nanostrip could be useful for sensors and thermally active components
It is demonstrated that the newly proposed nano-sinusoid shape has more resonance wavelength tunabil...
In the present Letter, we demonstrate how the design of metallic nanoparticle arrays with large elec...
This work is dedicated to the improvement of the near-field enhancement beneath the gold and silver ...
In plasmonics, the accurate computation of the electromagnetic field enhancement is necessary in det...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Using Green's matrix method and resonance capacity concept, surface plasmon resonances of metal...
Surface plasmon excitation that is due to a single or a structured circular aperture in a flatmetall...
We theoretically analyze a method for characterizing propagating surface plasmon polaritons (SPPs) o...
We present a comparative study of nanoantennas for maximum power enhancements at their feed gaps. Du...
Nanoantennas are used to control light on the nanoscale in a wide range of applications. However, th...
Plasmonic sensors based on ordered arrays of nanoprisms are optimized in terms of their geometric pa...
International audienceAn adapted method of optimization of coated metallic nanoparticles is introduc...
A plasmonic coupling device consisting of an array of ellipsoidal silver nanoparticles embedded in s...
Nanometer-scale plasmonic structures have a wide variety of applications in optics and photonics, wi...
A new nano-sinusoid shape has recently been proposed, which offers the advantage of more resonance w...
It is demonstrated that the newly proposed nano-sinusoid shape has more resonance wavelength tunabil...
In the present Letter, we demonstrate how the design of metallic nanoparticle arrays with large elec...
This work is dedicated to the improvement of the near-field enhancement beneath the gold and silver ...
In plasmonics, the accurate computation of the electromagnetic field enhancement is necessary in det...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Using Green's matrix method and resonance capacity concept, surface plasmon resonances of metal...
Surface plasmon excitation that is due to a single or a structured circular aperture in a flatmetall...
We theoretically analyze a method for characterizing propagating surface plasmon polaritons (SPPs) o...
We present a comparative study of nanoantennas for maximum power enhancements at their feed gaps. Du...
Nanoantennas are used to control light on the nanoscale in a wide range of applications. However, th...
Plasmonic sensors based on ordered arrays of nanoprisms are optimized in terms of their geometric pa...
International audienceAn adapted method of optimization of coated metallic nanoparticles is introduc...
A plasmonic coupling device consisting of an array of ellipsoidal silver nanoparticles embedded in s...
Nanometer-scale plasmonic structures have a wide variety of applications in optics and photonics, wi...
A new nano-sinusoid shape has recently been proposed, which offers the advantage of more resonance w...
It is demonstrated that the newly proposed nano-sinusoid shape has more resonance wavelength tunabil...
In the present Letter, we demonstrate how the design of metallic nanoparticle arrays with large elec...
This work is dedicated to the improvement of the near-field enhancement beneath the gold and silver ...