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Abstrakty
Double gallium arsenide quantum wells (2QW) were inserted within AlxGa1-xAs barriers of the intrinsic layer of an ordinary solar cell. Structure parameters have strong influence on device performance and should be precisely controlled in order to obtain the enhancement of conversion efficiency. Computer simulations of solar cells were carried out by SimWindows program v. 1.5.0. Some parameters of optimized quantum well solar cells (QWSC) and reference p-i-n solar cell structures, like: series resistance Rs, shunt resistance Rsh, emission coefficients (n1 and n2), diffusion and recombination components of current (Jd and Jr) were compared.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
371--376
Opis fizyczny
Bibliogr. 6 poz.
Twórcy
autor
autor
autor
autor
- Wrocław University of Technology, Faculty of Microsystem Electronics and Photonics, ul. Janiszewskiego 11/17, Wrocław, Poland
Bibliografia
- [1] BARNHAM K.W.J., DUGGAN G., A new approach to high-efficiency multi-band-gap solar cells, Journal of Applied Physics 67(7), 1990, pp. 3490–3.
- [2] BARNHAM K., CONNOLLY J., GRIFFIN P., HAARPAINTNER G., NELSON J., TSUI E., ZACHARIOU A., OSBORNE J., BUTTON C., HILL G., HOPKINSON M., PATE M., ROBERTS J., FOXON T., Voltage enhancement in quantum well solar cells, Journal of Applied Physics 80(2), 1996, pp. 1201–6.
- [3] RAULT F.K., ZAHEDI A., Ideal quantum well solar cell designs, Physica E 21(1), 2004, pp. 61–70.
- [4] RIMADA J.C., HERNANDEZ L., Modelling of ideal AlGaAs quantum well solar cells, Microelectronics Journal 32(9), 2001, pp. 719–23.
- [5] BARNHAM K., BALLARD I., BARNES J., CONNOLLY J., GRIFFIN P., KLUFTINGER B., NELSON J., TSUI E., ZACHARIOU A., Quantum well solar cells, Applied Surface Sience 113/114, 1997, pp. 722–33.
- [6] PRAŻMOWSKA J., KORBUTOWICZ R., Optimization of multi quantum well solar cell, Optica Applicata 35(3), 2005, pp. 619–26.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW6-0011-0005