We analytically investigate the light trapping performance in plasmonic solar cells with Si/metallic structures. We consider absorption enhancements for surface plasmon polaritons (SPPs) at planar Si/metal interfaces and localized surface plasmon resonances (LSPRs) for metallic spheres in a Si matrix. We discover that the enhancement factors at Si/metal interfaces are not bound to the conventional Lambertian limit, and strong absorption can be achieved around plasmonic resonant frequencies. In addition, those enhancements are greatly reduced as the fields decay away from the Si/metal interfaces. Therefore, localized plasmonic resonances can be used as efficient light trapping schemes for ultrathin Si solar cells (< 50 nm), while photonic gu...
Metallic back structures with one-dimensional periodic nanoridges attached to a thin-film amorphous ...
Surface plasmon polariton (SPP) waveguide-coupled back reflector geometry is proposed for efficient ...
We report on a plasmonic light-trapping concept based on localized surface plasmon polariton induced...
We systematically investigate the design of two-dimensional silver (Ag) hemisphere arrays on crystal...
The surface plasmon polariton(SPP) is a novel approach for light trapping in solar cells. SPP enhanc...
We calculate the maximum optical absorptance enhancements in thin semiconductor films on metals due ...
Light trapping is of critical importance for constructing high efficiency solar cells. In this paper...
Light trapping application is crucial in thin-film silicon solar cells in order to increase light ab...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
ABSTRACT: Advanced light management in thin-film solar cells is becoming increasingly important to r...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Plasmonic light trapping in thin film solar cells is investigated using full-wave electromagnetic si...
Due to the limitation and the rising cost of the fossil fuel supplies as well as the advances in nan...
A back metallic binary-rectangle grating is proposed to realize absorption enhancement through intro...
The integration of nanophotonic and plasmonic structures with solar cells offers the ability to cont...
Metallic back structures with one-dimensional periodic nanoridges attached to a thin-film amorphous ...
Surface plasmon polariton (SPP) waveguide-coupled back reflector geometry is proposed for efficient ...
We report on a plasmonic light-trapping concept based on localized surface plasmon polariton induced...
We systematically investigate the design of two-dimensional silver (Ag) hemisphere arrays on crystal...
The surface plasmon polariton(SPP) is a novel approach for light trapping in solar cells. SPP enhanc...
We calculate the maximum optical absorptance enhancements in thin semiconductor films on metals due ...
Light trapping is of critical importance for constructing high efficiency solar cells. In this paper...
Light trapping application is crucial in thin-film silicon solar cells in order to increase light ab...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
ABSTRACT: Advanced light management in thin-film solar cells is becoming increasingly important to r...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Plasmonic light trapping in thin film solar cells is investigated using full-wave electromagnetic si...
Due to the limitation and the rising cost of the fossil fuel supplies as well as the advances in nan...
A back metallic binary-rectangle grating is proposed to realize absorption enhancement through intro...
The integration of nanophotonic and plasmonic structures with solar cells offers the ability to cont...
Metallic back structures with one-dimensional periodic nanoridges attached to a thin-film amorphous ...
Surface plasmon polariton (SPP) waveguide-coupled back reflector geometry is proposed for efficient ...
We report on a plasmonic light-trapping concept based on localized surface plasmon polariton induced...