We present a systematic experimental study on the impact of disorder in advanced nanophotonic light-trapping concepts of thin-film solar cells. Thin-film solar cells made of hydrogenated amorphous silicon were prepared on imprint-textured glass superstrates. For periodically textured superstrates of periods below 500nm, the nanophotonic light-trapping effect is already superior to state-of-the-art randomly textured front contacts. The nanophotonic light-trapping effect can be associated to light coupling to leaky waveguide modes causing resonances in the external quantum efficiency of only a few nanometer widths for wavelengths longer than 500nm. With increasing disorder of the nanotextured front contact, these resonances broaden and their ...
We study light-trapping in thin-film silicon solar cells with rough interfaces. We consider solar ce...
We study light-trapping in thin-film silicon solar cells with rough interfaces. We consider solar ce...
ABSTRACT: We theoretically investigate light trapping in thin film crystalline silicon solar cells w...
We present a systematic simulation study on the impact of disorder in thin film silicon solar cells ...
We present a systematic simulation study on the impact of disorder in thin film silicon solar cells ...
We present experimental studies on the impact of disorder in nanophotonic thin-film solar cells. Dis...
We investigated the light coupling to waveguide modes in nanophotonic thin-film solar cells exhibiti...
We investigated the light coupling to waveguide modes in nanophotonic thin-film solar cells exhibiti...
We investigated the light coupling to waveguide modes in nanophotonic thin-film solar cells exhibiti...
We investigated the light coupling to waveguide modes in nanophotonic thin-film solar cells exhibiti...
The angular dependence of light-trapping in nanophotonic thin-film solar cells is inherent due to th...
Light trapping is crucial to increase efficiency in thin-film solar cells and to reduce the cost of ...
Light trapping is crucial to increase efficiency in thin-film solar cells and to reduce the cost of ...
We theoretically investigate light trapping with disordered 1D photonic structures in thin-film crys...
We theoretically investigate light trapping with disordered 1D photonic structures in thin-film crys...
We study light-trapping in thin-film silicon solar cells with rough interfaces. We consider solar ce...
We study light-trapping in thin-film silicon solar cells with rough interfaces. We consider solar ce...
ABSTRACT: We theoretically investigate light trapping in thin film crystalline silicon solar cells w...
We present a systematic simulation study on the impact of disorder in thin film silicon solar cells ...
We present a systematic simulation study on the impact of disorder in thin film silicon solar cells ...
We present experimental studies on the impact of disorder in nanophotonic thin-film solar cells. Dis...
We investigated the light coupling to waveguide modes in nanophotonic thin-film solar cells exhibiti...
We investigated the light coupling to waveguide modes in nanophotonic thin-film solar cells exhibiti...
We investigated the light coupling to waveguide modes in nanophotonic thin-film solar cells exhibiti...
We investigated the light coupling to waveguide modes in nanophotonic thin-film solar cells exhibiti...
The angular dependence of light-trapping in nanophotonic thin-film solar cells is inherent due to th...
Light trapping is crucial to increase efficiency in thin-film solar cells and to reduce the cost of ...
Light trapping is crucial to increase efficiency in thin-film solar cells and to reduce the cost of ...
We theoretically investigate light trapping with disordered 1D photonic structures in thin-film crys...
We theoretically investigate light trapping with disordered 1D photonic structures in thin-film crys...
We study light-trapping in thin-film silicon solar cells with rough interfaces. We consider solar ce...
We study light-trapping in thin-film silicon solar cells with rough interfaces. We consider solar ce...
ABSTRACT: We theoretically investigate light trapping in thin film crystalline silicon solar cells w...