We present a numerical analysis of surface plasmon waveguides exhibiting both long-range propagation and spatial confinement of light with lateral dimensions of less than 10% of the free-space wavelength. Attention is given to characterizing the dispersion relations, wavelength-dependent propagation, and energy density decay in two-dimensional Ag/SiO2/Ag structures with waveguide thicknesses ranging from 12 nm to 250 nm. As in conventional planar insulator-metal-insulator (IMI) surface plasmon waveguides, analytic dispersion results indicate a splitting of plasmon modes—corresponding to symmetric and antisymmetric electric field distributions—as SiO2 core thickness is decreased below 100 nm. However, unlike IMI structures, surface plas...
Subwavelength plasmonic waveguides are the most promising candidates for developing planar photonic ...
We report the observation of strongly confined plasmon modes in hybridized metal-dielectric slot wav...
The characteristics of long-range hybrid plasmonic modes guided by multilayer metal-dielectric plana...
A numerical analysis of surface plasmon dispersion, propagation, and localization on smooth lossy fi...
The development of techniques for efficiently confining photons on the deep sub-wavelength spatial s...
Plasmonics has provided researchers new means to control optical dispersion and light localization a...
Plasmonics has provided researchers new means to control optical dispersion and light localization a...
Guiding optical energy in metal–dielectric nanostructures by the use of plasmon excitations known as...
We have studied subwavelength confinement of the surface plasmon polariton modes of various plasmoni...
We have studied subwavelength confinement of the surface plasmon polariton modes of various plasmoni...
Since the development of the light microscope in the 16th century, optical device size and performan...
With the rapid development of nanofabrication technology and powerful computational tools over the l...
Guiding optical energy in metal–dielectric nanostructures by the use of plasmon excitations known as...
In free space, the diffraction limit sets a lower bound to the size to which light can be confined. ...
In free space, the diffraction limit sets a lower bound to the size to which light can be confined. ...
Subwavelength plasmonic waveguides are the most promising candidates for developing planar photonic ...
We report the observation of strongly confined plasmon modes in hybridized metal-dielectric slot wav...
The characteristics of long-range hybrid plasmonic modes guided by multilayer metal-dielectric plana...
A numerical analysis of surface plasmon dispersion, propagation, and localization on smooth lossy fi...
The development of techniques for efficiently confining photons on the deep sub-wavelength spatial s...
Plasmonics has provided researchers new means to control optical dispersion and light localization a...
Plasmonics has provided researchers new means to control optical dispersion and light localization a...
Guiding optical energy in metal–dielectric nanostructures by the use of plasmon excitations known as...
We have studied subwavelength confinement of the surface plasmon polariton modes of various plasmoni...
We have studied subwavelength confinement of the surface plasmon polariton modes of various plasmoni...
Since the development of the light microscope in the 16th century, optical device size and performan...
With the rapid development of nanofabrication technology and powerful computational tools over the l...
Guiding optical energy in metal–dielectric nanostructures by the use of plasmon excitations known as...
In free space, the diffraction limit sets a lower bound to the size to which light can be confined. ...
In free space, the diffraction limit sets a lower bound to the size to which light can be confined. ...
Subwavelength plasmonic waveguides are the most promising candidates for developing planar photonic ...
We report the observation of strongly confined plasmon modes in hybridized metal-dielectric slot wav...
The characteristics of long-range hybrid plasmonic modes guided by multilayer metal-dielectric plana...