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  4. Picosecond laser texturization of mc-silicon for photovoltaics: A comparison between 1064 nm, 532 nm and 355 nm radiation wavelengths
 

Picosecond laser texturization of mc-silicon for photovoltaics: A comparison between 1064 nm, 532 nm and 355 nm radiation wavelengths

URI
https://arbor.bfh.ch/handle/arbor/37566
Version
Published
Date Issued
2016
Author(s)
Binetti, Simona
Le Donne, Alessia
Rolfi, Andrea
Jäggi, Beat
Neuenschwander, Beat  
Busto, Chiara
Frigeri, Cesare
Scorticati, Davide
Longoni, Luca
Pellegrino, Sergio
Type
Article
Language
English
Abstract
tSelf-organized surface structures were produced by picosecond laser pulses on multi-crystalline siliconfor photovoltaic applications. Three different laser wavelengths were employed (i.e. 1064 nm, 532 nmand 355 nm) and the resulting morphologies were observed to effectively reduce the reflectivity of thesamples after laser irradiation. Besides, a comparative study of the laser induced subsurface damage gen-erated by the three different wavelengths was performed by confocal micro-Raman, photoluminescenceand transmission electron microscopy. The results of both the structural and optical characterizationshowed that the mc-Si texturing performed with the laser at 355 nm provides surface reflectivity between11% and 8% over the spectral range from 400 nm to 1 �m, while inducing the lowest subsurface damage,located above the depletion region of the p–n junction.
Subjects
QC Physics
DOI
10.24451/arbor.11704
https://doi.org/10.24451/arbor.11704
Publisher DOI
10.1016/j.apsusc.2016.02.187
Journal
Applied Surface Science
ISSN
0169-4332
Organization
Institute for Surface Applied Laser, Phototonics and Surface Technologies ALPS  
Technik und Informatik  
Volume
371
Publisher
Elsevier
Submitter
Neuenschwander, Beat
Citation apa
Binetti, S., Le Donne, A., Rolfi, A., Jäggi, B., Neuenschwander, B., Busto, C., Frigeri, C., Scorticati, D., Longoni, L., & Pellegrino, S. (2016). Picosecond laser texturization of mc-silicon for photovoltaics: A comparison between 1064 nm, 532 nm and 355 nm radiation wavelengths. In Applied Surface Science (Vol. 371). Elsevier. https://doi.org/10.24451/arbor.11704
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