Biblio

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C
J. Czochralski, «Ein neues Verfahren zur Messung der Kristallisationsgeschwindigheit der Metalle», Zeitschrift für physikalische Chemie, т. 92, с. 219–221, 1918.
P. J. Cousins и др., «Gen III: Improved Performance at Lower Cost», в 35th IEEE Photovoltaic Specialists Conference, Honolulu, Hawaii, 2010.
R. Corkish, Luke, K. L., Altermatt, P. P., и Heiser, G., «Simulating Electron-Beam-Induced Current Profiles Across p-n Junctions», 16h European Solar Energy Conference. с. 1590-1593, 2000.
R. Corkish, Luke, K. L., Altermatt, P. P., и Heiser, G., «Simulating Electron-Beam-Induced Current Profiles Across p-n Junctions», в Proceedings of the 16h European Solar Energy Conference, Glasgow UK, 2000, с. 1590-1593.
P. I. Cooper, «The absorption of radiation in solar stills», Solar Energy, т. 12, с. 333 - 346, 1969.
D. M. Chapin, Fuller, C. S., и Pearson, G. L., «A New Silicon P-N Junction Photocell for Converting Solar Radiation into Electrical Power», Journal of Applied Physics, т. 25, с. 676-677, 1954.
R. Chandramohan, Sanjeeviraja, C., и Mahalingam, T., «Preparation of Zinc Selenide Thin Films by Electrodeposition Technique for Solar Cell Applications», physica status solidi (a), т. 163, № 2, с. R11 - R12, 1997.
H. C. Card и Yang, E. S., «Electronic processes at grain boundaries in polycrystalline semiconductors under optical illumination», IEEE Transactions on Electron Devices, т. ED-24, с. 397-402, 1977.
P. Campbell и Green, M. A., «High performance light trapping textures for monocrystalline silicon solar cells», Solar Energy Materials and Solar Cells, т. 65, № 1-4, с. 369 - 375, 2001.
P. Campbell и Green, M. A., «Light trapping properties of pyramidally textured surfaces», Journal of Applied Physics, т. 62, № 1, с. 243, 1987.
B
G. Bunea, Wilson, K., Meydbray, Y., Campbell, M., и Ceuster, D. D., «Low Light Performance of Mono-Crystalline Silicon Solar Cells», в 4th World Conference on Photovoltaic Energy Conference, Waikoloa, HI, 2006, с. 1312–1314.
S. P. Bremner, Levy, M. Y., и 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, т. 16, с. 225–233, 2008.
F. Braun, «On Conductance in Metal Sulphides», Ann. d. Physik, т. 153, с. 556, 1874.
S. Bowden и Rohatgi, A., «Rapid and Accurate Determination of Series Resistance and Fill Factor Losses in Industrial Silicon Solar Cells», в 17th European Photovoltaic Solar Energy Conference, Munich, Germany, 2001.
K. Bothe, Sinton, R., и Schmidt, J., «Fundamental boron-oxygen-related carrier lifetime limit in mono- and multicrystalline silicon», Progress in Photovoltaics: Research and Applications, т. 13, с. 287 - 296, 2005.
M. Blanco-Muriel, Alarcón-Padilla, D. C., López-Moratalla, T., и Lara-Coira, M. Í., «Computing the solar vector», Solar Energy, т. 70, с. 431 - 441, 2001.
A. W. Blakers, Green, M. A., Leo, T., Outhred, H., и Robins, B., The Role of Photovoltaics in Reducing Greenhouse Gas Emissions. Canberra: Australian Government Publishing Service, 1991.
L. Bergmann, «Uber eine neue Selen- Sperrschicht Photozelle», Physikalische Zeitschrift, т. 32, с. 286, 1931.
P. Benjamin, «Voltaic Cell, Chapter XIV», New York: Wiley, 1983.
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, т. 9, с. 145-149, 1839.
A. E. Becquerel, «Memoire sur les effects d´electriques produits sous l´influence des rayons solaires», Annalen der Physick und Chemie, т. 54, с. 35-42, 1841.
G. Bauer, «Absolutwerte der optischen Absorptionskonstanten von Alkalihalogenidkristallen im Gebiet ihrer ultravioletten Eigenfrequenzen», Annalen der Physik, т. 411, № 4, с. 434 - 464, 1934.
P. A. Basore, «Defining terms for crystalline silicon solar cells», Progress in Photovoltaics: Research and Applications, т. 2, с. 177-179, 1994.

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