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Spatially resolved determination of the dark saturation current by electroluminescence imaging

: Glatthaar, M.; Giesecke, J.; Kasemann, M.; Haunschild, J.; The, M.; Warta, W.; Rein, S.

Fulltext urn:nbn:de:0011-n-2095377 (1.0 MByte PDF)
MD5 Fingerprint: 2201c91dc089aebcf06e1f2c7855ee5f
Created on: 31.8.2012

Ray, S. ; Indian Association for the Cultivation of Science -IACS-:
18th International Photovoltaic Science and Engineering Conference & Exhibition 2009. Technical digest : 19 - 23 January, 2009, Science City Convention Center, Kolkata, India
New Delhi: Macmillan, 2009 (Macmillan advanced research series)
ISBN: 0-230-63743-4
ISBN: 978-0-230-63743-6
International Photovoltaic Science and Engineering Conference & Exhibition (PVSEC) <18, 2009, Kolkata/India>
Conference Paper, Electronic Publication
Fraunhofer ISE ()

We present a novel method to determine spatially resolved the dark saturation current of standard silicon solar cells from electroluminescence (EL) images. We verify our method by applying it to simulated EL images and by comparison with an spectral response light beam induced current (SR-LBIC) of a multicrystalline silicon solar cell.