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Experimental and simulation study on high-power laser irradiation of 3D-printed microstructures

M.Cipriani G.Di Giorgio F.Consoli M.Scisció A.Solovjovas I.A.Petsi M.Malinauskas P.Andreoli G.Cristofari E.Di Ferdinando

极端条件下的物质与辐射(英文)2026,Vol.11Issue(2):51-64,14.
极端条件下的物质与辐射(英文)2026,Vol.11Issue(2):51-64,14.DOI:10.1063/5.0283201

Experimental and simulation study on high-power laser irradiation of 3D-printed microstructures

Experimental and simulation study on high-power laser irradiation of 3D-printed microstructures

M.Cipriani 1G.Di Giorgio 1F.Consoli 1M.Scisció 1A.Solovjovas 2I.A.Petsi 2M.Malinauskas 2P.Andreoli 1G.Cristofari 1E.Di Ferdinando1

作者信息

  • 1. ENEA,Nuclear Department,Centro Ricerche Frascati,Frascati,Italy
  • 2. Laser Nanophotonics Group,Laser Research Center,Physics Faculty,Vilnius University,Vilnius,Lithuania
  • 折叠

摘要

引用本文复制引用

M.Cipriani,G.Di Giorgio,F.Consoli,M.Scisció,A.Solovjovas,I.A.Petsi,M.Malinauskas,P.Andreoli,G.Cristofari,E.Di Ferdinando..Experimental and simulation study on high-power laser irradiation of 3D-printed microstructures[J].极端条件下的物质与辐射(英文),2026,11(2):51-64,14.

基金项目

This work has been carried out within the framework of the EUROfusion Consortium,funded by the European Union via the Euratom Research and Training Programme(Grant Agreement No.101052200—EUROfusion).The views and opinions expressed are,however,those of the authors only and do not necessarily reflect those of the European Union or the European Commission.Nei-ther the European Union nor the European Commission can be held responsible for them.The software used in this work was developed in part by the DOE NNSA-and DOE Office of Science-supported Flash Center for Computational Science at the University of Chicago and the University of Rochester.The computing resources and the related technical support used for this work have been provided by CRESCO-ENEAGRID High Performance Computing infrastruc-ture and its staff.33 The CRESCO-ENEAGRID High Performance Computing infrastructure is funded by ENEA,the Italian National Agency for New Technologies,Energy and Sustainable Economic Development and by Italian and European research programmes (Grant Agreement No.101052200—EUROfusion)

see http://www.cresco.enea.it/english for information.This research has been carried out in the framework of the"Universities' Excel-lence Initiative"programme by the Ministry of Education,Science and Sports of the Republic of Lithuania under an agreement with the Research Council of Lithuania(Project No.S-A-UEI-23-6).Addi-tional support was received through EU LASERLAB-EUROPE JRA-extension(Grant Agreement No.871124,Horizon 2020 Research and Innovation Programme). (Project No.S-A-UEI-23-6)

极端条件下的物质与辐射(英文)

2468-2047

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