Biblio

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Journal Article
J. C. Zolper, Narayanan, S., Wenham, S. R., and Green, M. A., 16.7% efficient, laser textured, buried contact polycrystalline silicon solar cell, Applied Physics Letters, vol. 55, p. 2363, 1989.
J. Zhao, Wang, A., Green, M. A., and 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. Zhao et al., 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., and 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.
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.
G. Bauer, Absolutwerte der optischen Absorptionskonstanten von Alkalihalogenidkristallen im Gebiet ihrer ultravioletten Eigenfrequenzen, Annalen der Physik, vol. 411, no. 4, pp. 434 - 464, 1934.
P. I. Cooper, The absorption of radiation in solar stills, Solar Energy, vol. 12, pp. 333 - 346, 1969.
M. A. Green, Accuracy of Analytical Expressions for Solar Cell Fill Factors, Solar Cells, vol. 7, pp. 337-340, 1982.
K. Misiakos and Tsamakis, D., Accurate measurements of the silicon intrinsic carrier density from 78 to 340 K, Journal of Applied Physics, vol. 74, no. 5, p. 3293, 1993.
W. G. Adams and Day, R. E., The Action of Light on Selenium, Proceedings of the Royal Society, London, vol. A25, p. 113, 1877.
S. P. Bremner, Levy, M. Y., and Honsberg, C. B., Analysis of tandem solar cell efficiencies under {AM1.5G} spectrum using a rapid flux calculation method, Progress in Photovoltaics: Research and Applications, vol. 16, pp. 225–233, 2008.
K. L. Luke and Cheng, L. - J., Analysis of the interaction of a laser pulse with a silicon wafer: Determination of bulk lifetime and surface recombination velocity, Journal of Applied Physics, vol. 61, pp. 2282-2293, 1987.
F. A. Lindholm, Fossum, J. G., and Burgess, E. L., Application of the superposition principle to solar-cell analysis, IEEE Transactions on Electron Devices, vol. 26, pp. 165–171, 1979.
S. R. Wenham, Green, M. A., Watt, M. E., and Corkish, R., Applied Photovoltaics, p. 317, 2007.
S. Durand, Attaining Thirty-Year Photovoltaic System Lifetime, Progress in Photovoltaics: Research and Applications, 1994.
D. Jordan and Nagle, J. P., Buried contact concentrator solar cells, Progress in Photovoltaics: Research and Applications, vol. 2, pp. 171-176, 1994.
W. D. Eades and Swanson, R. M., Calculation of surface generation and recombination velocities at the Si-SiO2 interface, Journal of Applied Physics, vol. 58, p. 4267, 1985.
J. E. Parrott, Choice of an equivalent black body solar temperature, Solar Energy, vol. 51, pp. 195 - 195, 1993.
M. Blanco-Muriel, Alarcón-Padilla, D. C., López-Moratalla, T., and Lara-Coira, M. Í., Computing the solar vector, Solar Energy, vol. 70, pp. 431 - 441, 2001.
F. Braun, On Conductance in Metal Sulphides, Ann. d. Physik, vol. 153, p. 556, 1874.
R. A. Sinton and Cuevas, A., Contactless determination of current–voltage characteristics and minority-carrier lifetimes in semiconductors from quasi-steady-state photoconductance data, Applied Physics Letters, vol. 69, pp. 2510-2512, 1996.
L. O. Grondahl, The Copper-Cuprous-Oxide Rectifier and Photoelectric Cell, Review of Modern Physics, vol. 5, p. 141, 1933.
J. Schmidt, Kerr, M. J., and Altermatt, P. P., Coulomb-enhanced Auger recombination in crystalline silicon at intermediate and high injection densities, Journal of Applied Physics, vol. 88, pp. 1494-1497, 2000.
P. A. Basore, Defining terms for crystalline silicon solar cells, Progress in Photovoltaics: Research and Applications, vol. 2, pp. 177-179, 1994.

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