We present a theoretical study of amorphous and crystalline thin-film solar cells with a periodic pattern on a sub-micron scale realized in the silicon layer and filled with silicon dioxide right below a properly designed antireflection coating. The study and optimization of the PV structure as a function of all the photonic crystals parameters allows to identify the different roles of the periodic pattern and of the etching depth in determining an increase of the absorption. By patterning thin-film silicon solar cells with a periodic etching in addition to an antireflection coating, we found an increase of the short-circuit current up to 36.5% for crystalline silicon. These results demonstrate the advantage of a wavelength-scale, photonic-...
Efficient solar cells require both strong absorption and effective collection of photogenerated carr...
Light trapping has been an important issue for thin film silicon solar cells because of the low abso...
ABSTRACT: We theoretically investigate light trapping in thin film crystalline silicon solar cells w...
We present a theoretical study of amorphous and crystalline thin-film solar cells with a periodic pa...
ABSTRACT: We present a theoretical study of amorphous and crystalline thin-film solar cells with a p...
We present a theoretical study of crystalline and amorphous silicon thin-film solar cells with a per...
We theoretically investigate the light-trapping properties of one- and two-dimensional periodic patt...
We theoretically investigate the light-trapping properties of one- and two-dimensional periodic patt...
Haase C, Stiebig H. Thin-film silicon solar cells with efficient periodic light trapping texture. Ap...
Efficient photovoltaic conversion of solar energy requires optimization of both light absorption and...
For solar cells based on thin-film microcrystalline (mu c-Si:H) or amorphous silicon (a-Si:H) with a...
Efficient photovoltaic conversion of solar energy requires optimization of both light absorption and...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
6 pages. SPIE Photonics Europe paperThe absorption of thin hydrogenated amorphous silicon layers can...
6 pages. SPIE Photonics Europe paperThe absorption of thin hydrogenated amorphous silicon layers can...
Efficient solar cells require both strong absorption and effective collection of photogenerated carr...
Light trapping has been an important issue for thin film silicon solar cells because of the low abso...
ABSTRACT: We theoretically investigate light trapping in thin film crystalline silicon solar cells w...
We present a theoretical study of amorphous and crystalline thin-film solar cells with a periodic pa...
ABSTRACT: We present a theoretical study of amorphous and crystalline thin-film solar cells with a p...
We present a theoretical study of crystalline and amorphous silicon thin-film solar cells with a per...
We theoretically investigate the light-trapping properties of one- and two-dimensional periodic patt...
We theoretically investigate the light-trapping properties of one- and two-dimensional periodic patt...
Haase C, Stiebig H. Thin-film silicon solar cells with efficient periodic light trapping texture. Ap...
Efficient photovoltaic conversion of solar energy requires optimization of both light absorption and...
For solar cells based on thin-film microcrystalline (mu c-Si:H) or amorphous silicon (a-Si:H) with a...
Efficient photovoltaic conversion of solar energy requires optimization of both light absorption and...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
6 pages. SPIE Photonics Europe paperThe absorption of thin hydrogenated amorphous silicon layers can...
6 pages. SPIE Photonics Europe paperThe absorption of thin hydrogenated amorphous silicon layers can...
Efficient solar cells require both strong absorption and effective collection of photogenerated carr...
Light trapping has been an important issue for thin film silicon solar cells because of the low abso...
ABSTRACT: We theoretically investigate light trapping in thin film crystalline silicon solar cells w...