DocumentCode :
3202736
Title :
Solar Light-Induced Opacity of Mind Cells
Author :
Kuznicki, Zbigniew T. ; Meyrueis, Patrick
Author_Institution :
Univ. Louis Pasteur, Strasbourg
Volume :
2
fYear :
2006
fDate :
38838
Firstpage :
1267
Lastpage :
1270
Abstract :
Multi-interface solar cells exhibit a dramatically low UV- and blue-spectrum photovoltaic performance independently of the electronic quality of their surface. A paradox can even be observed, the better the electronic passivation the poorer the conversion efficiency. The effect can be explained by solar light-induced opacity, which reduces considerably or even totally the photon penetration, into the device bulk. This opacity results from a feedback occasioned by the free-carrier absorption: better surface passivation, higher free-carrier density, stronger surface dead zone absorptance. Particularly, the total energy of the incident short wavelength beam can be absorbed in front of a carrier collection limit buried in the emitter. This limit acts simultaneously on the electronic performance, blocking free-carriers, and on the optical performance, being at the origin of an enhancement of the absorptance. As a consequence, a thin surface stratum dominates the optical functions of MIND cells through the free-carrier gas confined inside it. The main characterization methods used were reflectivity and spectral response with a varying intensity incident beam. The investigation allows modification of the free-carrier confinement using different device architectures. The results demonstrate the domination of the free-carrier optical functions on the multi-interface cell conversion
Keywords :
elemental semiconductors; passivation; photovoltaic effects; reflectivity; silicon; solar cells; ultraviolet spectra; Si; UV-spectrum photovoltaic effect; blue-spectrum photovoltaic effect; electronic passivation; free-carrier absorption; free-carrier confinement; free-carrier density; free-carrier optical functions; multiinterface cell conversion; multiinterface novel device cells; multiinterface solar cells; reflectivity; solar light-induced opacity; surface passivation; Absorption; Carrier confinement; Optical feedback; Optical surface waves; Passivation; Photovoltaic cells; Photovoltaic systems; Reflectivity; Solar power generation; Stimulated emission;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Energy Conversion, Conference Record of the 2006 IEEE 4th World Conference on
Conference_Location :
Waikoloa, HI
Print_ISBN :
1-4244-0017-1
Electronic_ISBN :
1-4244-0017-1
Type :
conf
DOI :
10.1109/WCPEC.2006.279644
Filename :
4059874
Link To Document :
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