Biblio

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Journal Article
M. A. Green, Solar Cells: Operating Principles, Technology and System Applications, p 274, 1982.
M. A. Green, Solar cell fill factors: General graph and empirical expressions, Solid-State Electronics, vol 24, pp 788 - 789, 1981.
M. A. Green, Emery, K., Hishikawa, Y., 와/과 Warta, W., Solar cell efficiency tables (version 35), Progress in Photovoltaics: Research and Applications, vol 18, pp 144–150, 2010.
M. A. Green, Self-consistent optical parameters of intrinsic silicon at 300 K including temperature coefficients, Solar Energy Materials and Solar Cells, vol 92, pp 1305–1310, 2008.
D. PYSCH, Mette, A., 와/과 Glunz, S. W., A review and comparison of different methods to determine the series resistance of solar cells, Solar Energy Materials and Solar Cells, vol 91, pp 1698 - 1706, 2007.
P. P. Altermatt, Schenk, A., Geelhaar, F., 와/과 Heiser, G., Reassessment of the intrinsic carrier density in crystalline silicon in view of band-gap narrowing, Journal of Applied Physics, vol 93, 호 3, p 1598, 2003.
A. Goetzberger 와/과 Hoffmann, V. U., Photovoltaic Solar Energy Generation, p 232, 2005.
M. A. Green, The path to 25% silicon solar cell efficiency: History of silicon cell evolution, Progress in Photovoltaics: Research and Applications, vol 17, pp 183-189, 2009.
M. A. Green 와/과 Keevers, M. J., Optical properties of intrinsic silicon at 300 K, Progress in Photovoltaics: Research and Applications, vol 3, pp 189 - 192, 1995.
P. Campbell 와/과 Green, M. A., Light trapping properties of pyramidally textured surfaces, Journal of Applied Physics, vol 62, 호 1, p 243, 1987.
A. B. Sproul 와/과 Green, M. A., Improved value for the silicon intrinsic carrier concentration from 275 to 375 K, Journal of Applied Physics, vol 70, pp 846-854, 1991.
A. B. Sproul 와/과 Green, M. A., Improved value for the silicon intrinsic carrier concentration from 275 to 375 K, Journal of Applied Physics, vol 70, p 846, 1991.
A. B. Sproul, Green, M. A., 와/과 Zhao, J., Improved value for the silicon intrinsic carrier concentration at 300 K, Applied Physics Letters, vol 57, p 255, 1990.
A. Richter, Glunz, S. W., Werner, F., Schmidt, J., 와/과 Cuevas, A., Improved quantitative description of Auger recombination in crystalline silicon, Physical Review B, vol 86, 호 16, 2012.
P. Campbell 와/과 Green, M. A., High performance light trapping textures for monocrystalline silicon solar cells, Solar Energy Materials and Solar Cells, vol 65, 호 1-4, pp 369 - 375, 2001.
S. J. Robinson, Aberle, A. G., 와/과 Green, M. A., Departures from the principle of superposition in silicon solar cells, Journal of Applied Physics, vol 76, p 7920, 1994.
S. W. Glunz, Rein, S., Warta, W., Knobloch, J., 와/과 Wettling, W., Degradation of carrier lifetime in Cz silicon solar cells, Solar Energy Materials and Solar Cells, vol 65, pp 219 - 229, 2001.
L. O. Grondahl, The Copper-Cuprous-Oxide Rectifier and Photoelectric Cell, Review of Modern Physics, vol 5, p 141, 1933.
S. R. Wenham, Green, M. A., Watt, M. E., 와/과 Corkish, R., Applied Photovoltaics, p 317, 2007.
M. A. Green, Accuracy of Analytical Expressions for Solar Cell Fill Factors, Solar Cells, vol 7, pp 337-340, 1982.
J. Zhao, Wang, A., 와/과 Green, M. A., 24.5% efficiency PERT silicon solar cells on SEH MCZ substrates and cell performance on other SEH CZ and FZ substrates, Solar Energy Materials and Solar Cells, vol 66, pp 27 - 36, 2001.
J. Zhao 기타, 20,000 PERL silicon cells for the "1996 World Solar Challenge" solar car race, Progress in Photovoltaics: Research and Applications, vol 5, pp 269–276, 1997.
J. Zhao, Wang, A., Green, M. A., 와/과 Ferrazza, F., 19.8% efficient "honeycomb" textured multicrystalline and 24.4% monocrystalline silicon solar cells, Applied Physics Letters, vol 73, pp 1991-1993, 1998.
J. C. Zolper, Narayanan, S., Wenham, S. R., 와/과 Green, M. A., 16.7% efficient, laser textured, buried contact polycrystalline silicon solar cell, Applied Physics Letters, vol 55, p 2363, 1989.

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