Biblio

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M
E. G. Laue, The measurement of solar spectral irradiance at different terrestrial elevations, Solar Energy, vol. 13, pp. 43 - 50, IN1-IN4, 51-57, 1970.
M. Emilio, Kuhn, J. R., Bush, R. I., and Scholl, I. F., MEASURING THE SOLAR RADIUS FROM SPACE DURING THE 2003 AND 2006 MERCURY TRANSITS, The Astrophysical Journal, vol. 750, no. 2, p. 135, 2012.
I. Astronomic Union, Measuring the Universe, 2012. .
A. E. Becquerel, Memoire sur les effects d´electriques produits sous l´influence des rayons solaires, Annalen der Physick und Chemie, vol. 54, pp. 35-42, 1841.
F. Dimroth et al., METAMORPHIC GaInP/GaInAs/Ge TRIPLE-JUNCTION SOLAR CELLS WITH > 41 % EFFICIENCY, 34th IEEE Photovoltaic Specialists Conference. 2009.
M. Devika et al., Microstructure dependent physical properties of evaporated tin sulfide films, Journal of Applied Physics, vol. 100, no. 2, p. 023518, 2006.
L. A. Corathers, Minerals Yearbook, Vol. I, Metals & Minerals:. U.S. Government Printing Office, p. 144, 2013.
M. A. Green, King, F. D., and Shewchun, J., Minority carrier MIS tunnel diodes and their application to electron- and photo-voltaic energy conversion—I. Theory, Solid-State Electronics, vol. 17, no. 6, pp. 551 - 561, 1974.
C. H. Wang, Misiakos, K., and Neugroschel, A., Minority-carrier transport parameters in n-type silicon, IEEE Transactions on Electron Devices, vol. 37, pp. 1314 - 1322, 1990.
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.
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.
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.
N
A. Rockett et al., Na incorporation in Mo and CuInSe2 from production processes, Solar energy materials and solar cells, vol. 59, pp. 255–264, 1999.
M. Parhizkar et al., Nanocrystalline CuO films prepared by pyrolysis of Cu-arachidate LB multilayers, Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol. 257-258, pp. 277 - 282, 2005.
W. Keogh and Blakers, A. W., Natural Sunlight Calibration of Silicon Solar Cells., 17th European Photovoltaic Solar Energy Conference. Munich, Germany, 2001.
C. E. Fritts, On a New Form of Selenium Photocell, American J. of Science, vol. 26, p. 465, 1883.
C. B. Honsberg, Corkish, R., and Bremner, S. P., A New Generalized Detailed Balance Formulation to Calculate Solar Cell Efficiency Limits, 17th European Photovoltaic Solar Energy Conference. pp. 22-26, 2001.
A. G. Aberle, Wenham, S. R., and Green, M. A., A New Method for the Accurate Measurements of the Lumped Series Resistance of Solar Cells, in Proceedings of the 23rd IEEE Photovoltaic Specialists Conference, Louisville, KY, 1993.
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.
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.
R. M. Milne, Note on the Equation, of Time, The Mathematical Gazette, vol. 10, no. 155, pp. 372 - 375, 1921.
P. A. Basore, Numerical modeling of textured silicon solar cells using PC-1D, Electron Devices, IEEE Transactions on, vol. 37, pp. 337 -343, 1990.

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