By tailoring the dispersion curve of surface plasmons (SPs) of a thin metallic film surrounded by dielectric half-spaces, it is shown that the group velocity of the symmetric mode is always positive, while the group velocity of the anti-symmetric mode can be negative. Consequently, the forward and backward propagation of SPs, in which the energy flow is respectively parallel or antiparallel to the wave vector, can be realized. The physical origin of the intriguing backward SPs is given. Furthermore, schemes for the negative refraction and imaging of SPs are proposed by incorporating two plasmon modes with group velocities of opposite signs
We examined the optical properties of nanolayered metal-dielectric lattices. At subwavelength regime...
We consider the dispersion relations of the optical excitations in a chain of silver nanoparticles s...
Accompanied by the rise of plasmonic materials beyond those based on noble metals and the developmen...
By tailoring the dispersion curve of surface plasmons (SPs) of a thin metallic film surrounded by di...
A negative dielectric function of e.g. a metal allows to excite surface plasmons (SP) along the inte...
International audienceThe group velocity of a plasmonic guided mode can be written as the ratio of t...
Surface-plasmon polaritons propagating on thin metal films bounded by dielectrics of nearly equal re...
In photonic crystals made of materials with a frequency dependent dielectric function surface plasmo...
We extend our previous results [R. Baer, J. Chem. Phys. 126, 014705 (2007).] to develop a simple the...
The field of plasmonics aims at manipulating light using deeply subwavelength nanostructures. Such s...
Waves with negative group velocity (NGV) were discovered in optics by Sommerfeld and Brillouin, and ...
Using electrodynamics tools, we investigated the effect of surface plasmons on the propagation direc...
Thesis (Ph.D.)--University of Rochester. College of Engineering and Applied Science. Institute of Op...
Using electrodynamics tools, we investigated the effect of surface plasmons on the propagation direc...
Plasmons, i.e. collective oscillations of conduction electrons, have a strong influence on the optic...
We examined the optical properties of nanolayered metal-dielectric lattices. At subwavelength regime...
We consider the dispersion relations of the optical excitations in a chain of silver nanoparticles s...
Accompanied by the rise of plasmonic materials beyond those based on noble metals and the developmen...
By tailoring the dispersion curve of surface plasmons (SPs) of a thin metallic film surrounded by di...
A negative dielectric function of e.g. a metal allows to excite surface plasmons (SP) along the inte...
International audienceThe group velocity of a plasmonic guided mode can be written as the ratio of t...
Surface-plasmon polaritons propagating on thin metal films bounded by dielectrics of nearly equal re...
In photonic crystals made of materials with a frequency dependent dielectric function surface plasmo...
We extend our previous results [R. Baer, J. Chem. Phys. 126, 014705 (2007).] to develop a simple the...
The field of plasmonics aims at manipulating light using deeply subwavelength nanostructures. Such s...
Waves with negative group velocity (NGV) were discovered in optics by Sommerfeld and Brillouin, and ...
Using electrodynamics tools, we investigated the effect of surface plasmons on the propagation direc...
Thesis (Ph.D.)--University of Rochester. College of Engineering and Applied Science. Institute of Op...
Using electrodynamics tools, we investigated the effect of surface plasmons on the propagation direc...
Plasmons, i.e. collective oscillations of conduction electrons, have a strong influence on the optic...
We examined the optical properties of nanolayered metal-dielectric lattices. At subwavelength regime...
We consider the dispersion relations of the optical excitations in a chain of silver nanoparticles s...
Accompanied by the rise of plasmonic materials beyond those based on noble metals and the developmen...