Abstract
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As expected, the calculated ablation depth was seen to increaseat increasing fluencesfor all the materials under study. Numerical results regarding the temperature evolution for all the materials and wavelengths studied suggest that differences in the material absorption coefficient for the range analyzed do not induce significant changes in the obtained ablation depths. Numerical results showed that the variation of the pulse duration exhibits significant influence on the ablation depth only for low fluences. Experimental and numerical results for all the analyzed materials were in good agreement, thus giving evidence of the suitability of the model employed for the materials and conditions analyzed. | |
International
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Si |
Congress
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3RD INTERNATIONAL CONFERENCE ON SURFACES, COATINGS AND NANOSTRUCTURES MATERIALS. NANOSMAT 2008 |
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960 |
Place
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BARCELONA |
Reviewers
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Si |
ISBN/ISSN
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0000000000 |
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Start Date
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21/10/2008 |
End Date
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24/10/2008 |
From page
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1 |
To page
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1 |
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POSTER |