Biblio

Export 162 results:
Author [ Title(Asc)] Type Year
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
D
A. B. Sproul, Dimensionless solution of the equation describing the effect of surface recombination on carrier decay in semiconductors, Journal of Applied Physics, vol 76, pp 2851-2854, 1994.
W. Shockley 와/과 Queisser, H. J., Detailed Balance Limit of Efficiency of p-n Junction Solar Cells, Journal of Applied Physics, vol 32, pp 510-519, 1961.
C. B. Honsberg, Anwar, K. K., Mehrvarz, H. R., Cotter, J. E., 와/과 Wenham, S. R., Dependence of aluminium alloying on solar cell processing conditions, 13th Workshop on Crystalline Silicon Solar Cell Materials and Processes. 2003.
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.
P. A. Basore, Defining terms for crystalline silicon solar cells, Progress in Photovoltaics: Research and Applications, vol 2, pp 177-179, 1994.
H. J. Wenger, Schaefer, J., Rosenthal, A., Hammond, B., 와/과 Schlueter, L., Decline of the Carrisa Plains PV Power Plant: The Impact of Concentrating Sunlight on Flat Plates, 22nd IEEE Photovoltaic Specialists Conference. Las Vegas, USA, pp 586-592, 1991.
C
J. Schmidt, Kerr, M. J., 와/과 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.
L. O. Grondahl, The Copper-Cuprous-Oxide Rectifier and Photoelectric Cell, Review of Modern Physics, vol 5, p 141, 1933.
R. A. Sinton 와/과 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.
F. Braun, On Conductance in Metal Sulphides, Ann. d. Physik, vol 153, p 556, 1874.
M. Blanco-Muriel, Alarcón-Padilla, D. C., López-Moratalla, T., 와/과 Lara-Coira, M. Í., Computing the solar vector, Solar Energy, vol 70, pp 431 - 441, 2001.
J. E. Parrott, Choice of an equivalent black body solar temperature, Solar Energy, vol 51, pp 195 - 195, 1993.
W. D. Eades 와/과 Swanson, R. M., Calculation of surface generation and recombination velocities at the Si-SiO2 interface, Journal of Applied Physics, vol 58, p 4267, 1985.
B
S. R. Wenham 와/과 Green, M. A., Buried contact solar cell. 1988.
D. Jordan 와/과 Nagle, J. P., Buried contact concentrator solar cells, Progress in Photovoltaics: Research and Applications, vol 2, pp 171-176, 1994.
J. H. Wohlgemuth 와/과 Narayanan, S., Buried contact concentrator solar cells, Twenty Second IEEE Photovoltaic Specialists Conference, vol 1. pp 273-277, 1991.
A
S. Durand, Attaining Thirty-Year Photovoltaic System Lifetime, Progress in Photovoltaics: Research and Applications, 1994.
R. M. Swanson, Approaching the 29% limit efficiency of silicon solar cells, Thirty-First IEEE Photovoltaic Specialists Conference. 01/2005, Lake buena Vista, FL, USA, pp 889-94, 2005.
A. B. Meinel 와/과 Meinel, M. P., Applied Solar Energy. Addison Wesley Publishing Co., 1976.
S. R. Wenham, Green, M. A., Watt, M. E., 와/과 Corkish, R., Applied Photovoltaics, p 317, 2007.
F. A. Lindholm, Fossum, J. G., 와/과 Burgess, E. L., Application of the superposition principle to solar-cell analysis, IEEE Transactions on Electron Devices, vol 26, pp 165–171, 1979.
K. L. Luke 와/과 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.
S. P. Bremner, Levy, M. Y., 와/과 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. K. Anwar, Aluminium Back Surface Field in Buried Contact Solar Cells, University of New South Wales, 2000.

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