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3D optical simulation formalism OPTOS for textured silicon solar cells

Authors :
Marius Peters
Oliver Höhn
Benedikt Bläsi
Hubert Hauser
Peter Kiefel
Johannes Eisenlohr
Claas Müller
Nico Tucher
Jan Christoph Goldschmidt
Publica
Source :
Optics Express. 23:A1720
Publication Year :
2015
Publisher :
The Optical Society, 2015.

Abstract

In this paper we introduce the three-dimensional formulation of the OPTOS formalism, a matrix-based method that allows for the efficient simulation of non-coherent light propagation and absorption in thick textured sheets. As application examples, we calculate the absorptance of solar cells featuring textures on front and rear side with different feature sizes operating in different optical regimes. A discretization of polar and azimuth angle enables a three-dimensional description of systems with arbitrary surface textures. We present redistribution matrices for 3D surface textures, including pyramidal textures, binary crossed gratings and a Lambertian scatterer. The results of the OPTOS simulations for silicon sheets with different combinations of these surfaces are in accordance with both optical measurements and results based on established simulation methods like ray tracing. Using OPTOS, we show that the integration of a diffractive grating at the rear side of a silicon solar cell featuring a pyramidal front side results in absorption close to the Yablonovitch Limit enhancing the photocurrent density by 0.6 mA/cmsup2/supfor a 200 µm thick cell.

Details

ISSN :
10944087
Volume :
23
Database :
OpenAIRE
Journal :
Optics Express
Accession number :
edsair.doi.dedup.....1526b4596b203e8c68f9fcca6bb55128
Full Text :
https://doi.org/10.1364/oe.23.0a1720