For ultrathin (similar to 10 nm) nanocomposite films of plasmonic materials and semiconductors, the absorptance of normal incident light is typically limited to about 50%. However, through addition of a non-absorbing spacer with a highly reflective backside to such films, close to 100% absorptance can be achieved at a targeted wavelength. Here, a simple analytic model useful in the long wavelength limit is presented. It shows that the spectral response can largely be characterized in terms of two wavelengths, associated with the absorber layer itself and the reflective support, respectively. These parameters influence both absorptance peak position and shape. The model is employed to optimize the system towards broadband solar energy conver...
In this paper, we investigate a two-dimensional corrugated plasmonic nanosurface for efficient light...
The emerging field of plasmonics has yielded methods for guiding and localizing light at the nanosca...
This chapter reviews the recent promising advances in the use of plasmonic nanostructures forming me...
For ultrathin (similar to 10 nm) nanocomposite films of plasmonic materials and semiconductors, the ...
For ultrathin films of a given material, light absorption is proportional to the film thickness. How...
Plasmonic nanostructures placed within or near photovoltaic (PV) layers are of high current interest...
If the active layer of efficient solar cells could be made 100 times thinner than in today\u27s thin...
The challenge when applying photonics to photovoltaics is the need to provide broadband, multiple-an...
Photovoltaic technologies are likely to become one of the world’s major renewable energy generators ...
We demonstrate that subwavelength scatterers can couple sunlight into guided modes in thin film Si a...
We systematically explore the performance of ultrathin amorphous silicon solar cells integrated on p...
Photovoltaics are a key technology which can meet rising global demand for clean energy. However, si...
This work describes an investigation into optical methods to improve the optical absorption properti...
Metals in the plasmonic metamaterial absorbers for photovoltaics constitute undesired resistive heat...
ABSTRACT Organic solar cells have a strong potential for the near future, because their material and...
In this paper, we investigate a two-dimensional corrugated plasmonic nanosurface for efficient light...
The emerging field of plasmonics has yielded methods for guiding and localizing light at the nanosca...
This chapter reviews the recent promising advances in the use of plasmonic nanostructures forming me...
For ultrathin (similar to 10 nm) nanocomposite films of plasmonic materials and semiconductors, the ...
For ultrathin films of a given material, light absorption is proportional to the film thickness. How...
Plasmonic nanostructures placed within or near photovoltaic (PV) layers are of high current interest...
If the active layer of efficient solar cells could be made 100 times thinner than in today\u27s thin...
The challenge when applying photonics to photovoltaics is the need to provide broadband, multiple-an...
Photovoltaic technologies are likely to become one of the world’s major renewable energy generators ...
We demonstrate that subwavelength scatterers can couple sunlight into guided modes in thin film Si a...
We systematically explore the performance of ultrathin amorphous silicon solar cells integrated on p...
Photovoltaics are a key technology which can meet rising global demand for clean energy. However, si...
This work describes an investigation into optical methods to improve the optical absorption properti...
Metals in the plasmonic metamaterial absorbers for photovoltaics constitute undesired resistive heat...
ABSTRACT Organic solar cells have a strong potential for the near future, because their material and...
In this paper, we investigate a two-dimensional corrugated plasmonic nanosurface for efficient light...
The emerging field of plasmonics has yielded methods for guiding and localizing light at the nanosca...
This chapter reviews the recent promising advances in the use of plasmonic nanostructures forming me...