Biblio

Export 162 results:
Author Title [ Type(Asc)] Year
Journal Article
F. Kasten and Young, A. T., Revised optical air mass tables and approximation formula, Applied Optics, vol. 28, pp. 4735–4738, 1989.
D. PYSCH, Mette, A., and 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.
W. R. Thurber, Mattis, R. L., Liu, Y. M., and Filliben, J. J., Resistivity-Dopant Density Relationship for Phosphorus-Doped Silicon, Journal of The Electrochemical Society, vol. 127, pp. 1807-1812, 1980.
W. R. Thurber, Mattis, R. L., Liu, Y. M., and Filliben, J. J., Resistivity-Dopant Density Relationship for Boron-Doped Silicon, Journal of The Electrochemical Society, vol. 127, pp. 2291-2294, 1980.
R. A. Sinton and Swanson, R. M., Recombination in highly injected silicon, Electron Devices, IEEE Transactions on, vol. 34, pp. 1380 - 1389, 1987.
A. E. Becquerel, Recherches sur les effets de la radiation chimique de la lumiere solaire au moyen des courants electriques, Comptes Rendus de L´Academie des Sciences, vol. 9, pp. 145-149, 1839.
R. Hezel, Recent progress in MIS solar cells, Progress in Photovoltaics: Research and Applications, vol. 5, pp. 109-120, 1997.
P. P. Altermatt, Schenk, A., Geelhaar, F., and Heiser, G., Reassessment of the intrinsic carrier density in crystalline silicon in view of band-gap narrowing, Journal of Applied Physics, vol. 93, no. 3, p. 1598, 2003.
M. Y. Levy and Honsberg, C. B., Rapid and precise calculations of energy and particle flux for detailed-balance photovoltaic applications, Solid-State Electronics, vol. 50, pp. 1400-1405, 2006.
R. Chandramohan, Sanjeeviraja, C., and Mahalingam, T., Preparation of Zinc Selenide Thin Films by Electrodeposition Technique for Solar Cell Applications, physica status solidi (a), vol. 163, no. 2, pp. R11 - R12, 1997.
P. Würfel, Physics of Solar Cells, p. 183, 2009.
J. Nelson, The Physics of Solar Cells, p. 355, 2003.
J. G. Fossum, Physical operation of back-surface-field silicon solar cells, IEEE Transactions on Electron Devices, vol. 24, pp. 322 - 325, 1977.
A. Goetzberger and Hoffmann, V. U., Photovoltaic Solar Energy Generation, p. 232, 2005.
T. Fuyuki, Kondo, H., Yamazaki, T., Takahashi, Y., and Uraoka, Y., Photographic surveying of minority carrier diffusion length in polycrystalline silicon solar cells by electroluminescence, Applied Physics Letters, vol. 86, p. 262108, 2005.
E. F. Kingsbury and Ohl, R. S., Photoelectric Properties of Tonically Bombarded Silicon, Bell Systems Technical Journal, vol. 31, pp. 802-815, 1952.
S. M. Hu, Fahey, P., and Sutton, P., On Phosphorus Diffusion in Silicon, On Phosphorus Diffusion in Silicon, vol. 54, pp. 6912-6922, 1983.
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 and Keevers, M. J., Optical properties of intrinsic silicon at 300 K, Progress in Photovoltaics: Research and Applications, vol. 3, pp. 189 - 192, 1995.
P. A. Basore, Numerical modeling of textured silicon solar cells using PC-1D, Electron Devices, IEEE Transactions on, vol. 37, pp. 337 -343, 1990.
W. A. Pliskin and Conrad, E. E., Nondestructive determination of thickness and refractive index of transparent films, IBM Journal of Research Devices, vol. 8, pp. 43–51, 1964.
D. M. Chapin, Fuller, C. S., and Pearson, G. L., A New Silicon P-N Junction Photocell for Converting Solar Radiation into Electrical Power, Journal of Applied Physics, vol. 25, pp. 676-677, 1954.
C. E. Fritts, On a New Form of Selenium Photocell, American J. of Science, vol. 26, p. 465, 1883.
G. Masetti, Severi, M., and Solmi, S., Modeling of carrier mobility against carrier concentration in arsenic-, phosphorus-, and boron-doped silicon, IEEE Transactions on Electron Devices, vol. ED-30, pp. 764–9, 1983.
R. Perez, Ineichen, P., Seals, R., Michalsky, J., and Stewart, R., Modeling daylight availability and irradiance components from direct and global irradiance, Solar Energy, vol. 44, pp. 271–289, 1990.

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