Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5365720 | Applied Surface Science | 2010 | 9 Pages |
Abstract
Pulsed digital holographic interferometry has been used to compare the laser ablation process of a Q-switched Nd-YAG laser pulse (wavelength 1064Â nm, pulse duration 12Â ns) on two different metals (Zn and Ti) under atmospheric air pressure. Digital holograms were recorded for different time delays using collimated laser light (532Â nm) passed through the volume along the target. Numerical data of the integrated refractive index field were calculated and presented as phase maps. Intensity maps were calculated from the recorded digital holograms and are used to calculate the attenuation of the probing laser beam by the ablated plume. The different structures of the plume, namely streaks normal to the surface for Zn in contrast to absorbing regions for Ti, indicates that different mechanisms of laser ablation could happen for different metals for the same laser settings and surrounding gas. At a laser fluence of 5Â J/cm2, phase explosion appears to be the ablation mechanism in case of Zn, while for Ti normal vaporization seems to be the dominant mechanism.
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Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
E. Amer, P. Gren, A.F.H. Kaplan, M. Sjödahl, M. El Shaer,