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Large area crystallization of amorphous Si with overlapping high repetition rate laser pulses

Authors
Ryu, Sang-GilGruber, IvanGrigoropoulos, Costas P.Poulikakos, DimosMoon, Seung-Jae
Issue Date
Sep-2012
Publisher
Elsevier Sequoia
Keywords
Thin films; Silicon; Laser crystallization; Lateral growth; Large area annealing; Atomic force microscopy
Citation
Thin Solid Films, v.520, no.22, pp 6724 - 6729
Pages
6
Indexed
SCI
SCIE
SCOPUS
Journal Title
Thin Solid Films
Volume
520
Number
22
Start Page
6724
End Page
6729
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/164795
DOI
10.1016/j.tsf.2012.07.052
ISSN
0040-6090
Abstract
This paper presents a pulsed laser crystallization technique, enabling large area crystallization of amorphous Si to produce grains having well-defined size and orientation. The method is developed by first determining the parameters influencing crystallization induced by single laser pulses of circular cross-sectional profile. In a second step, crystallization by overlapping round spots is examined. The experiments reveal three zones characterized by distinctly different crystallized morphologies following the laser irradiation. One of these zones corresponds to the regime of lateral crystal growth, wherein grains are driven towards the center of the spot by the radial temperature gradient. These findings are then applied to processing via line beam profiles that facilitate large area crystallization upon rapid translation of the specimen. Crystallization of extended areas hinges on the determination of the crystal growth length for a single spot. The pitch between successive pulses is then set on the basis of this information. It is shown that the pulse energy has only a weak effect on the crystal growth length.
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