Scientific Publications of the CLASCO Project

Peer Review

Wang, W., Voisiat, B., Britz, D., Soldera, M., Sallese, M. D., Lasagni, A. F.: Fourier Analysis with Gini Coefficient: A New Approach to Assess Surface Topography in Direct Laser Interference Patterning, Journal of Laser Micro / Nanoengineering 19, 3 (2024). https:/doi.org/10.2961/jlmn.2024.03.2010 , Raw data on Zenodo: https://zenodo.org/records/14281182 

 

Tabares, I., Soldera, M., Voisiat, B., Lasagni, A.F.: Optical monitoring of periodical structure formation on light metals during a single laser pulse in the nanosecond regime. Journal of Laser Micro / Nanoengineering 19, 3 (2024). https://doi.org/10.2961/jlmn.2024.03.2003 , Raw data on Zenodo: https://zenodo.org/records/14069366

 

Tabares, I., Soldera, M., Voisiat, B. et al. Diffraction-based approach for real-time monitoring of nanosecond direct laser interference patterning structure formation on stainless steel. Sci Rep 14, 9599 (2024). https://doi.org/10.1038/s41598-024-60420-z 

Non-Peer Review

Lasagni, A. F.: Unveiling the European Journey: Advancements in Laser Technology through Laser4Fun, LAMpAS, and CLASCO projects. Proceedings of LPM2024 – the 25thInternational Symposium on Laser Precision Microfabrication.

 

Voisiat, B., Wang, W., Britz, D., Lasagni, A.F.: Pushing the Boundaries: 1 kW Fiber Laser-Driven Direct Laser Interference Patterning Technique. Proceedings of LPM2024 – the 25th International Symposium on Laser Precision Microfabrication.

 

Tabares, I., Soldera, M., Voisiat, B., Lasagni, A.F.: Real-time monitoring of nanosecond Direct Laser Interference Patterning structure formation on stainless steel using time-resolved reflectivity. Proceedings of LPM2024 – the 25th International Symposium on Laser Precision Microfabrication.

 

Lasagni, A., Voisiat, B., The development of direct laser interference patterning: past, present, and new challenges, Proceedings Volume 12875, Frontiers in Ultrafast Optics: Biomedical, Scientific, and Industrial Applications XXIV; 128750F (2024), SPIE LASE, 2024, San Francisco, California, United States. https://doi.org/10.1117/12.3010435 

Funding

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