Photon upconversion upon 1550 nm excitation is of high relevance for applications in the third biological excitation window, for photovoltaics beyond current limitations, and enables appealing options in the field of glass fiber telecommunications. Trivalent doped erbium ions Er3 are the material of choice for 1550 nm excited upconversion, however, they suffer from a low absorption cross section and a low brightness. Therefore, the ability of silicon metasurfaces to provide greatly enhanced electrical near fields is employed to enable efficient photon upconversion even at low external illumination conditions. Hexagonally shaped beta NaYF4 Er3 nanoparticles are placed on large area silicon metasurfaces designed to convert near infrared ...
Upconversion (UC) of subband-gap photons is a promising possibility to enhance solar cell efficiency...
Upconversion (UC) of subbandgap photons has the potential to increase solar cell efficiencies. In th...
Upconversion of sub-band-gap photons promises to increase solar cell efficiencies by making these ph...
Photon upconversion upon 1550 nm excitation is of high relevance for applications in the third biolo...
Photon upconversion UC using trivalent erbium Er 3 doped crystals is a promising concept to har...
Large scale nanoimprinted metasurfaces based on silicon photonic crystal slabs were produced and coa...
We present a double layer dielectric metasurface obtained by stacking a silicon nanodisk array and a...
In conventional silicon solar cells, photons with energies lower than the silicon band gap (1.12 eV)...
The applications of lanthanide-doped upconversion nanomaterials are limited by unsatisfactory bright...
The efficient conversion of low-energy, near-infrared (NIR) photons to higher energies promises adva...
Renewable Energy and the Environment of the OSA Optics and Photonics Congress 2013, Tucson, USA, 3-6...
Upconversion (UC) of sub-band-gap photons is a promising approach to increase solar cell efficiencie...
Frequency upconversion of sub-bandgap photons is one approach to push the efficiency limit of solar ...
Upconversion denotes the process of absorption of two or more photons followed by the emission of on...
Lanthanide-based upconversion materials convert low energy infrared photons into high energy visible...
Upconversion (UC) of subband-gap photons is a promising possibility to enhance solar cell efficiency...
Upconversion (UC) of subbandgap photons has the potential to increase solar cell efficiencies. In th...
Upconversion of sub-band-gap photons promises to increase solar cell efficiencies by making these ph...
Photon upconversion upon 1550 nm excitation is of high relevance for applications in the third biolo...
Photon upconversion UC using trivalent erbium Er 3 doped crystals is a promising concept to har...
Large scale nanoimprinted metasurfaces based on silicon photonic crystal slabs were produced and coa...
We present a double layer dielectric metasurface obtained by stacking a silicon nanodisk array and a...
In conventional silicon solar cells, photons with energies lower than the silicon band gap (1.12 eV)...
The applications of lanthanide-doped upconversion nanomaterials are limited by unsatisfactory bright...
The efficient conversion of low-energy, near-infrared (NIR) photons to higher energies promises adva...
Renewable Energy and the Environment of the OSA Optics and Photonics Congress 2013, Tucson, USA, 3-6...
Upconversion (UC) of sub-band-gap photons is a promising approach to increase solar cell efficiencie...
Frequency upconversion of sub-bandgap photons is one approach to push the efficiency limit of solar ...
Upconversion denotes the process of absorption of two or more photons followed by the emission of on...
Lanthanide-based upconversion materials convert low energy infrared photons into high energy visible...
Upconversion (UC) of subband-gap photons is a promising possibility to enhance solar cell efficiency...
Upconversion (UC) of subbandgap photons has the potential to increase solar cell efficiencies. In th...
Upconversion of sub-band-gap photons promises to increase solar cell efficiencies by making these ph...