Biblio

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1
S. Narayanan et al., 18% efficient polycrystalline silicon solar cells, Twenty First IEEE Photovoltaic Specialists Conference, vol. 1. pp. 678-680, 1990.
7
P. J. Verlinden, Swanson, R. M., and Crane, R. A., 7000 High Efficiency Cells for a Dream, Progress in Photovoltaics: Research and Applications, vol. 2, pp. 143 - 152, 1994.
L
P. Campbell and Green, M. A., Light trapping properties of pyramidally textured surfaces, Journal of Applied Physics, vol. 62, no. 1, p. 243, 1987.
T. Tiedje, Yablonovich, E., Cody, G. D., and Brooks, B. G., Limiting Efficiency of Silicon Solar Cells, IEEE TRANSACTIONS ON ELECTRON DEVICES, vol. ED-31, 1984.
D. De Ceuster, Cousins, P., Rose, D., Cudzinovic, M., and Mulligan, W., Low Cost, High Volume Production of >22% Efficiency Silicon Solar Cells, 22nd European Photovoltaic Specialist Conference. 2007.
D. De Ceuster, Cousins, P., Rose, D., Cudzinovic, M., and Mulligan, W., Low Cost, High Volume Production of >22% Efficiency Silicon Solar Cells, 22nd European Photovoltaic Specialist Conference. 2007.
G. Bunea, Wilson, K., Meydbray, Y., Campbell, M., and Ceuster, D. D., Low Light Performance of Mono-Crystalline Silicon Solar Cells, in 4th World Conference on Photovoltaic Energy Conference, Waikoloa, HI, 2006, pp. 1312–1314.
G. Bunea, Wilson, K., Meydbray, Y., Campbell, M., and Ceuster, D. D., Low Light Performance of Mono-Crystalline Silicon Solar Cells, in 4th World Conference on Photovoltaic Energy Conference, Waikoloa, HI, 2006, pp. 1312–1314.

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