Electron Filling Factor and Sunlight Concentration Effects on the Efficiency of Intermediate Band Solar Cell
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Electron Filling Factor and Sunlight Concentration Effects on the Efficiency of Intermediate Band Solar Cell

Authors: Nima Es'haghi Gorji, Hossein Movla, Foozieh Sohrabi, Alireza Mottaghizadeh, Mohammad Houshmand, Hassan Babaei, Arash Nikniazi

Abstract:

For a determined intermediate band position, the effects of electron filling factor and sunlight concentration on the active region thickness and efficiency of the quantum-dot intermediate band solar cell are calculated. For each value of electron filling factor, the maximum point of efficiency obtained and resulted in the optimum thickness of the cell under three different sunlight concentrations. We show the importance of filling factor as a parameter to be more considered. The photon recycling effect eliminated in all calculations.

Keywords: Intermediate band, Sunlight concentration, Efficiency limits, Electron filling factor

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1079956

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[1] A. Luque and A. Marti, "Increasing the Efficiency of Ideal Solar Cells by Photon Induced Transitions at Intermediate Levels", Phys. Rev. Lett, V. 78, 5014, 1997.
[2] A. Luque, L. Cuadra, and A. Marti, Proc. Conf. Sobre Dispositivos Electr├│nicos, Spain, Madrid, pp. 363-366, 1999.
[3] A. Marti, L. Cuadra and A. Luque, "Quantum dot intermediate band solar cell", Proc,28th IEEE Photovoltaic Specialist Conf, AK. Fairbanks, 2000.
[4] A. Luque, A. Marti, N. Lopez, E. Antolín, E. Cánovas, C. Stanley, C. Farmer, L. J. Caballero, L. Cuadra, and J.L. Balenzategui, Appl. Phys. Lett, V. 87, 083505, 2005.
[5] A. Marti, L. Cuadra, A. Luque, Photovoltaics for the 21st Century II, Proceedings of the International Symposium, The Electrochemical Society, INC. Pennington, NJ, pp. 46-60, 2001.
[6] A. Marti, L. Cuadra, A. Luque, "Partial Filling of a Quantum Dot Intermediate Band for Solar Cells", IEEE Trans. Electron. Devices, 48 (10) 2394, 2001.
[7] A. Luque, A. Marti, Prog. Photovoltaics. Res. Appl. 9 (2) 73, 2001.
[8] S. P. Bremner, R. Corkish, C. B. Honsberg, IEEE Trans. Electron. Device, 46 (10) 932, 1999.
[9] L. Cuadra, A. Marti, A. Luque, Proceedings of the 16th European Photovoltaic Solar Energy Conference, James & James Ltd. London, pp. 15-21, 2000.
[10] A. Marti, L. Cuadra, A. Luque. "Design constraints of the quantum-dot intermediate band solar cell,", Physica E, 14, 150 - 157, 2002.