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HomeKeywordslight-trapping

Keywords: light-trapping

Improved Nanophotonics Simulation Tools for Light-Trapping in Photovoltaics

Shepard S., Rubaiat F., Louisiana Tech University, US
Models used in the field of nanoparticle enhanced light-trapping have a wide range of complexity. Often one simply calculates how much power is absorbed in a particular region e.g., a layer of silicon withing a [...]

Periodic and Psuedo-Random Back-Reflector Nanoparticle Enhanced Light-Trapping in a Silicon Photovoltaic

Shepard S., Patel L., Rubaiat F., Louisiana Tech University, US
We consider the light-trapping enhancement of a silicon photovoltaic with conductive nanoparticles of various shapes, sizes and spacing as top-reflectors; used in conjunction with a periodic and a pseudo-random back-reflectors. The nanoparticles in the top-reflector [...]

Improved Nanophotonics Simulation Tools for Light-Trapping in Photovoltaics

Shepard S., Rubaiat F., Louisiana Tech University, US
Models used in the field of nanoparticle enhanced light-trapping have a wide range of complexity. Often one simply calculates how much power is absorbed in a particular region e.g., a layer of silicon withing a [...]

Periodic and Psuedo-Random Back-Reflector Nanoparticle Enhanced Light-Trapping in a Silicon Photovoltaic

Shepard S., Patel L., Rubaiat F., Louisiana Tech University, US
We consider the light-trapping enhancement of a silicon photovoltaic with conductive nanoparticles of various shapes, sizes and spacing as top-reflectors; used in conjunction with a periodic and a pseudo-random back-reflectors. The nanoparticles in the top-reflector [...]

Plasmonic Enhanced Light Trapping in a P3HT Photovoltaic

Shepard S., BakshiGupta D., St. Luce G., Louisiana Tech University, US
We consider the enhancement of an organic (P3HT) photovoltaic with conductive nanoparticles of various shapes, sizes and spacing as top-reflectors; used in conjunction with a periodic and a pseudo-random back-reflector. The surface for the pseudo-random [...]

A New Class of Nonlinear Light Trapping for Photovoltaic Systems

Shepard S., Louisiana Tech University, US
Light trapping is a useful way of enhancing photovoltaic conversion via any means by which light not converted to electricity in a photovoltaic (PV) in one pass through its PN junction, is given another opportunity [...]

Plasmonic Enhanced Light Trapping in a P3HT Photovoltaic

Shepard S., BakshiGupta D., St. Luce G., Louisiana Tech University, US
We consider the enhancement of an organic (P3HT) photovoltaic with conductive nanoparticles of various shapes, sizes and spacing as top-reflectors; used in conjunction with a periodic and a pseudo-random back-reflector. The surface for the pseudo-random [...]

A New Class of Nonlinear Light Trapping for Photovoltaic Systems

Shepard S., Louisiana Tech University, US
Light trapping is a useful way of enhancing photovoltaic conversion via any means by which light not converted to electricity in a photovoltaic (PV) in one pass through its PN junction, is given another opportunity [...]

Quantum Dot Enhanced Rugate Filtering and Light Trapping

Shepard S., Copeland J., Louisiana Tech University, US
Rugate filters use an exponential sinusoidal index profile, which is also multiplied by a window function to further reduce side lobes in comparison to other (discrete index) interference filters. These also have negligible harmonics and [...]

Quantum Dot Enhanced Rugate Filtering and Light Trapping

Shepard S., Copeland J., Louisiana Tech University, US
Rugate filters use an exponential sinusoidal index profile, which is also multiplied by a window function to further reduce side lobes in comparison to other (discrete index) interference filters. These also have negligible harmonics and [...]

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