We present here the design of nano-inclusions made of properly arranged collections of plasmonic metallic nano-particles that may exhibit a resonant magnetic dipole collective response in the visible domain. When such inclusions are embedded in a host medium, they may provide metamaterials with negative effective permeability at optical frequencies. We also show how the same inclusions may provide resonant electric dipole response and, when combining the two effects at the same frequencies, left-handed materials with both negative effective permitivity and permeability may be synthesized in the optical domain with potential applications for imaging and nano-optics applications
Super lattices of engineered spherical nanoparticles are considered as model structures exhibiting d...
Refractive index is determined by permittivity ϵ and permeability μ, where permittivity å is t...
Following our recent theoretical development of the concept of nano-inductors, nano-capacitors and n...
We present here the design of nano-inclusions made of properly arranged collections of plasmonic met...
In this paper a design solution for creating the artificial magnetic response of nanostructured meta...
The purpose of this paper is to show that semiconductor nano-structures built from non-magnetic InAs...
We have theoretically evaluated magnetic permeability of Ni nanocomposite films, in which the dipola...
In this paper we suggest and study a design solution of metamaterial made of raspberry-like clusters...
Properties of electromagnetic propagation in materials with negative permittivities and permeabiliti...
We present a thorough theoretical study of the optical properties of periodic structures built of si...
We present a detailed analytical theory for the plasmonic nanoring configuration first proposed by A...
We present a detailed analytical theory for the plasmonic nanoring configuration first proposed by A...
Super lattices of engineered spherical nanoparticles are considered as model structures exhibiting d...
Super lattices of engineered spherical nanoparticles are considered as model structures exhibiting d...
Super lattices of engineered spherical nanoparticles are considered as model structures exhibiting d...
Super lattices of engineered spherical nanoparticles are considered as model structures exhibiting d...
Refractive index is determined by permittivity ϵ and permeability μ, where permittivity å is t...
Following our recent theoretical development of the concept of nano-inductors, nano-capacitors and n...
We present here the design of nano-inclusions made of properly arranged collections of plasmonic met...
In this paper a design solution for creating the artificial magnetic response of nanostructured meta...
The purpose of this paper is to show that semiconductor nano-structures built from non-magnetic InAs...
We have theoretically evaluated magnetic permeability of Ni nanocomposite films, in which the dipola...
In this paper we suggest and study a design solution of metamaterial made of raspberry-like clusters...
Properties of electromagnetic propagation in materials with negative permittivities and permeabiliti...
We present a thorough theoretical study of the optical properties of periodic structures built of si...
We present a detailed analytical theory for the plasmonic nanoring configuration first proposed by A...
We present a detailed analytical theory for the plasmonic nanoring configuration first proposed by A...
Super lattices of engineered spherical nanoparticles are considered as model structures exhibiting d...
Super lattices of engineered spherical nanoparticles are considered as model structures exhibiting d...
Super lattices of engineered spherical nanoparticles are considered as model structures exhibiting d...
Super lattices of engineered spherical nanoparticles are considered as model structures exhibiting d...
Refractive index is determined by permittivity ϵ and permeability μ, where permittivity å is t...
Following our recent theoretical development of the concept of nano-inductors, nano-capacitors and n...