We investigate plasmon resonances in gold nanoparticles to enhance the quantum yield of upconverting materials. For this purpose, we use a rate equation model that describes the upconversion of trivalent erbium based upconverters. Changes of the optical field acting on the upconverter and the changes to the transition probabilities of the upconverter in the proximity of a gold nanoparticle are calculated using Mie theory and exact electrodynamic theory respectively. With this data, the influence on the luminescence of the upconverter is determined using the rate equation model. The results show that upconversion luminescence can be increased in the proximity of a spherical gold nanoparticle due to the change in the optical field and the mod...
Upconversion photoluminescence is a nonlinear effect where multiple lower energy excitation photons ...
Upconversion nanomaterials have became the focus of many studies due to their interesting optical pr...
In this paper we present an optical characterization of nanoparticle assemblies containing plasmonic...
A convenient method was developed to systematically study the wavelength-dependent upconversion enha...
Upconversion (UC) of subbandgap photons has the potential to increase solar cell efficiencies. In th...
The large energy-density enhancements, associated with the near-field of plasmonic metal nanoparticl...
Metallic nanostructures have the potential to modify the anti-Stokes emission of upconverting nanopa...
The geometry and dimension of a gold nanorod (GNR) are optimally designed to enhance the fluorescenc...
Upconversion nanoparticles show an increasing interest that is not bound to stop for many years to c...
Upconversion processes have found widespread applications in drug delivery, bio-imaging and solar-ce...
The up-conversion process is extensively studied because of its wide variety of applications such as...
Lanthanide-doped upconversion nanoparticles (UCNPs), as multifunctional light sources, are finding u...
Upconversion photoluminescence (PL) of a composite nanoparticle consisting of an Er and Yb codoped N...
Lanthanide-doped upconversion nanoparticles (UCNPs), as multifunctional light sources, are finding u...
The upconversion of infrared photons is a promising possibility to enhance solar cell efficiency by ...
Upconversion photoluminescence is a nonlinear effect where multiple lower energy excitation photons ...
Upconversion nanomaterials have became the focus of many studies due to their interesting optical pr...
In this paper we present an optical characterization of nanoparticle assemblies containing plasmonic...
A convenient method was developed to systematically study the wavelength-dependent upconversion enha...
Upconversion (UC) of subbandgap photons has the potential to increase solar cell efficiencies. In th...
The large energy-density enhancements, associated with the near-field of plasmonic metal nanoparticl...
Metallic nanostructures have the potential to modify the anti-Stokes emission of upconverting nanopa...
The geometry and dimension of a gold nanorod (GNR) are optimally designed to enhance the fluorescenc...
Upconversion nanoparticles show an increasing interest that is not bound to stop for many years to c...
Upconversion processes have found widespread applications in drug delivery, bio-imaging and solar-ce...
The up-conversion process is extensively studied because of its wide variety of applications such as...
Lanthanide-doped upconversion nanoparticles (UCNPs), as multifunctional light sources, are finding u...
Upconversion photoluminescence (PL) of a composite nanoparticle consisting of an Er and Yb codoped N...
Lanthanide-doped upconversion nanoparticles (UCNPs), as multifunctional light sources, are finding u...
The upconversion of infrared photons is a promising possibility to enhance solar cell efficiency by ...
Upconversion photoluminescence is a nonlinear effect where multiple lower energy excitation photons ...
Upconversion nanomaterials have became the focus of many studies due to their interesting optical pr...
In this paper we present an optical characterization of nanoparticle assemblies containing plasmonic...