The object of research is plasmonic properties copper of monosulfide nanoparticles. One of the most problematic areas is that there is still no unambiguous answer to which main copper monosulfide nanoparticles parameters have a decisive effect on their resonance absorption, scattering or electric field enhancement. It is necessary to study the plasmonic properties of copper monosulfide nanoparticles depending on their main parameter, namely the dielectric constant. The principle of dipole equivalence and Mee-Gans theory for the modeling of the optical nanoparticle characteristics is used. It is found that dielectric constant is a crucial parameter determining the resulting optical response of such nanoparticles. The surrounding medium refra...
In this article, we modulate the optical absorption, scattering, extinction, transmission and field ...
Noble metal nanoparticles are of great interest due to their tunable optical and radiative propertie...
We investigate the electromagnetic response of anisotropic (non-spherical) copper antimony disulfide...
The object of research is plasmonic properties copper of monosulfide nanoparticles. One of the most ...
The object of research is plasmonic properties copper of monosulfide nanoparticles. One of the most ...
AbstractIn this study by using the boundary element method, influence of various parameters on the r...
This project examines how the collective oscillation of electrons in optically excited metal nanopar...
The phenomena of localized surface plasmon resonances (LSPRs) has been broadly studied and is a prop...
Controllable synthesis of copper chalcogenide nanocrystals (NCs), including desired geometry, compos...
Nanoparticles are finding more practical applications in various fields of human activity, including...
The aim of this paper is to study the interaction of the electromagnetic wave with plasmonic nanopar...
The surface plasmon resonance evaluation of colloidal metal nanoparticles, synthesized in organic me...
Copper sulfide nanocrystals have recently been studied due to their metal-like behavior and strong p...
Plasmonic nanoparticles support surface plasmon resonances that are sensitive to the environment. Fa...
textThis thesis presents spectroscopic studies of metallic nanoparticle localized surface plasmons a...
In this article, we modulate the optical absorption, scattering, extinction, transmission and field ...
Noble metal nanoparticles are of great interest due to their tunable optical and radiative propertie...
We investigate the electromagnetic response of anisotropic (non-spherical) copper antimony disulfide...
The object of research is plasmonic properties copper of monosulfide nanoparticles. One of the most ...
The object of research is plasmonic properties copper of monosulfide nanoparticles. One of the most ...
AbstractIn this study by using the boundary element method, influence of various parameters on the r...
This project examines how the collective oscillation of electrons in optically excited metal nanopar...
The phenomena of localized surface plasmon resonances (LSPRs) has been broadly studied and is a prop...
Controllable synthesis of copper chalcogenide nanocrystals (NCs), including desired geometry, compos...
Nanoparticles are finding more practical applications in various fields of human activity, including...
The aim of this paper is to study the interaction of the electromagnetic wave with plasmonic nanopar...
The surface plasmon resonance evaluation of colloidal metal nanoparticles, synthesized in organic me...
Copper sulfide nanocrystals have recently been studied due to their metal-like behavior and strong p...
Plasmonic nanoparticles support surface plasmon resonances that are sensitive to the environment. Fa...
textThis thesis presents spectroscopic studies of metallic nanoparticle localized surface plasmons a...
In this article, we modulate the optical absorption, scattering, extinction, transmission and field ...
Noble metal nanoparticles are of great interest due to their tunable optical and radiative propertie...
We investigate the electromagnetic response of anisotropic (non-spherical) copper antimony disulfide...