AbstractMagnetoplasmonics based on Composite nanostructure, has been used in sensing, optical devices and optical switching. Magnetite@Au core@shell nanostructure exhibits both plasmonic and magnetic properties and holds promise for using in biomedical applications. The ability to control optical properties of magnetite@Au over a broad spectral range and adjustable composite thickness make these nanostructures an important subject for magnetoplasmonic studies. In this research, interparticle coupling effect on plasmon resonance properties of magnetite@Au magnetoplasmonics nanoparticles by using finite element method has been calculated. In addition optical characteristic of magnetite@Au strongly depend on size, surrounding medium and pitche...
Metallic nanostructures supporting Localized Surface Plasmon Resonances (LSPR) are characterized by ...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...
Interaction of light with magnetic nanoparticles, dispersed insolution or embedded in other material...
AbstractMagnetoplasmonics based on Composite nanostructure, has been used in sensing, optical device...
Plasmon resonance modulation with an external magnetic field (magnetoplasmonics) represents a promis...
We report the fabrication and the optical characterization of a composite system featuring optically...
To achieve the societal and technological ambitions set for nanotechnology in general, multifunction...
Functional properties tunability prospect of multi-layered and multi-metallic nanoparticles with res...
The optical and magneto-optical (MO) properties of magneto-plasmonic nanocomposite films made up of ...
The Faraday rotation spectrum of composites containing magnetite nanoparticles is found to be depen...
Plasmonics plays a key role in the development of advanced nanophotonics. Via the excitation of surf...
Subwavelength composite materials constitute an interesting path towards the development of material...
Plasmonic nanostructures are intriguing materials for applications in optical sensing and enhanced s...
The Faraday rotation spectrum of composites containing magnetite nanoparticles is found to be depend...
The interaction between light and ferromagnetic nanostructures is investigated in this thesis. Study...
Metallic nanostructures supporting Localized Surface Plasmon Resonances (LSPR) are characterized by ...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...
Interaction of light with magnetic nanoparticles, dispersed insolution or embedded in other material...
AbstractMagnetoplasmonics based on Composite nanostructure, has been used in sensing, optical device...
Plasmon resonance modulation with an external magnetic field (magnetoplasmonics) represents a promis...
We report the fabrication and the optical characterization of a composite system featuring optically...
To achieve the societal and technological ambitions set for nanotechnology in general, multifunction...
Functional properties tunability prospect of multi-layered and multi-metallic nanoparticles with res...
The optical and magneto-optical (MO) properties of magneto-plasmonic nanocomposite films made up of ...
The Faraday rotation spectrum of composites containing magnetite nanoparticles is found to be depen...
Plasmonics plays a key role in the development of advanced nanophotonics. Via the excitation of surf...
Subwavelength composite materials constitute an interesting path towards the development of material...
Plasmonic nanostructures are intriguing materials for applications in optical sensing and enhanced s...
The Faraday rotation spectrum of composites containing magnetite nanoparticles is found to be depend...
The interaction between light and ferromagnetic nanostructures is investigated in this thesis. Study...
Metallic nanostructures supporting Localized Surface Plasmon Resonances (LSPR) are characterized by ...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...
Interaction of light with magnetic nanoparticles, dispersed insolution or embedded in other material...