A numerical analysis of surface plasmon dispersion, propagation, and localization on smooth lossy films is presented. Particular attention is given to determining wavelength-dependent behavior of thin Ag slab waveguides embedded in a symmetric SiO2 environment. Rather than considering Ag as a damped free electron gas, the metal is defined by the experimentally determined optical constants of Johnson and Christy and Palik. As in free electron gas models, analytic dispersion results indicate a splitting of plasmon modes—corresponding to symmetric and antisymmetric field distributions—as film thickness is decreased below 50 nm. However, unlike free electron gas models, the surface plasmon wave vector remains finite at resonance with the antis...
Cathodoluminescence imaging spectroscopy is used to determine the propagation distance of surface pl...
We review the basic physics of surface-plasmon excitations occurring at metal/dielectric interfaces ...
Abstract Surface plasmons (SPs) carry electromagnetic energy in the form of collective oscillation o...
We present a numerical analysis of surface plasmon waveguides exhibiting both long-range propagation...
Guiding optical energy in metal–dielectric nanostructures by the use of plasmon excitations known as...
Guiding optical energy in metal–dielectric nanostructures by the use of plasmon excitations known as...
In this paper the propagation characteristics of Surface Plasmon Waves (SPWs) which exists on noble ...
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...
We investigate numerically the effect of a finite metal film thickness on the propagation characteri...
In this paper the propagation characteristics of Surface Plasmon Waves (SPWs) which exists on noble ...
Surface-plasmon polaritons propagating on thin metal films bounded by dielectrics of nearly equal re...
The propagation losses in metal-film-substrate two-dimensional optical waveguides are calculated. Lo...
The propagation losses in metal-film-substrate two-dimensional optical waveguides are calculated. Lo...
With the recent emergence of the field of metamaterials, the study of subwavelength propagation of p...
Cathodoluminescence imaging spectroscopy is used to determine the propagation distance of surface pl...
We review the basic physics of surface-plasmon excitations occurring at metal/dielectric interfaces ...
Abstract Surface plasmons (SPs) carry electromagnetic energy in the form of collective oscillation o...
We present a numerical analysis of surface plasmon waveguides exhibiting both long-range propagation...
Guiding optical energy in metal–dielectric nanostructures by the use of plasmon excitations known as...
Guiding optical energy in metal–dielectric nanostructures by the use of plasmon excitations known as...
In this paper the propagation characteristics of Surface Plasmon Waves (SPWs) which exists on noble ...
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...
We investigate numerically the effect of a finite metal film thickness on the propagation characteri...
In this paper the propagation characteristics of Surface Plasmon Waves (SPWs) which exists on noble ...
Surface-plasmon polaritons propagating on thin metal films bounded by dielectrics of nearly equal re...
The propagation losses in metal-film-substrate two-dimensional optical waveguides are calculated. Lo...
The propagation losses in metal-film-substrate two-dimensional optical waveguides are calculated. Lo...
With the recent emergence of the field of metamaterials, the study of subwavelength propagation of p...
Cathodoluminescence imaging spectroscopy is used to determine the propagation distance of surface pl...
We review the basic physics of surface-plasmon excitations occurring at metal/dielectric interfaces ...
Abstract Surface plasmons (SPs) carry electromagnetic energy in the form of collective oscillation o...