We suggest using tapered waveguides for compensating losses of surface plasmon-polaritons in order to enhance nonlinear effects at the nanoscale. We study nonlinear plasmon self-focusing in tapered metal-dielectric-metal slot waveguides and demonstrate that, by an appropriate choice of the taper angle, we can effectively suppress the mode attenuation achieving stable propagation of a spatial plasmon soliton. For larger tapering angles we observe plasmon-beam nanofocusing in both spatial dimensions
We report on plasmonic waveguides made of a thin metal stripe surrounded on one or both sides by a K...
Scientific and commercial applications of optical nanofcousing devices have attracted a lot of resea...
We study two major nonlinear effects in plasmonic structures: Second-harmonic generation in metal-in...
We suggest using coupled tapered waveguides for compensating losses of surface plasmon polaritons to...
We propose an air-slot plasmonic waveguide for nano-focusing. A tapered grating is used as a dipole ...
We discuss tunability and nonlinear properties of metamaterials operating at microwave and optical f...
We study nonlinear propagation of surface plasmon polaritons along an interface between metal and n...
Adiabatic and nonadiabatic nanofocusing of plasmons in tapered gap plasmon waveguides is analyzed us...
The nanofocusing of light source was proposed and simulated using the dielectric-loaded surface plas...
We studied adiabatic nanofocusing of strongly localized surface plasmons in tapered metal rods with ...
We propose and analyze a new type of mechanically robust optical nanofocusing probe with minimized e...
We study the propagation of femtosecond pulses in nonlinear metal-dielectric plasmonic waveguiding s...
Symmetric tapered dielectric structures in metal have demonstrated applications such as the nanofocu...
A major challenge in modern photonics and nano-optics is the diffraction limit of light which does n...
The development of techniques for efficiently confining photons on the deep sub-wavelength spatial s...
We report on plasmonic waveguides made of a thin metal stripe surrounded on one or both sides by a K...
Scientific and commercial applications of optical nanofcousing devices have attracted a lot of resea...
We study two major nonlinear effects in plasmonic structures: Second-harmonic generation in metal-in...
We suggest using coupled tapered waveguides for compensating losses of surface plasmon polaritons to...
We propose an air-slot plasmonic waveguide for nano-focusing. A tapered grating is used as a dipole ...
We discuss tunability and nonlinear properties of metamaterials operating at microwave and optical f...
We study nonlinear propagation of surface plasmon polaritons along an interface between metal and n...
Adiabatic and nonadiabatic nanofocusing of plasmons in tapered gap plasmon waveguides is analyzed us...
The nanofocusing of light source was proposed and simulated using the dielectric-loaded surface plas...
We studied adiabatic nanofocusing of strongly localized surface plasmons in tapered metal rods with ...
We propose and analyze a new type of mechanically robust optical nanofocusing probe with minimized e...
We study the propagation of femtosecond pulses in nonlinear metal-dielectric plasmonic waveguiding s...
Symmetric tapered dielectric structures in metal have demonstrated applications such as the nanofocu...
A major challenge in modern photonics and nano-optics is the diffraction limit of light which does n...
The development of techniques for efficiently confining photons on the deep sub-wavelength spatial s...
We report on plasmonic waveguides made of a thin metal stripe surrounded on one or both sides by a K...
Scientific and commercial applications of optical nanofcousing devices have attracted a lot of resea...
We study two major nonlinear effects in plasmonic structures: Second-harmonic generation in metal-in...