LASERLAB-EUROPE

The Integrated Initiative of European Laser Research Infrastructures

CoordinatorFYZIKALNI USTAV AV CR V.V.I ; Atomic Energy and Alternative Energies Commission ; MEDZINARODNE LASEROVE CENTRUM ; Ústav fyziky plazmatu AV ČR, v. v. i. ; INSTITUT ZA FIZIKU ; Max Planck Society ; STICHTING KATHOLIEKE UNIVERSITEIT ; IDRYMA TECHNOLOGIAS KAI EREVNAS ; ASSOCIACAO DO INSTITUTO SUPERIOR TECNICO PARA A INVESTIGACAO E DESENVOLVIMENTO ; GSI Helmholtzzentrum für Schwerionenforschung GmbH ; University of Strathclyde ; LABORATORIO EUROPEO DI SPETTROSCOPIE NON LINEARI ; VU University Amsterdam ; University of Szeged ; Polytechnic University of Milan ; University of Coimbra ; Helmholtz-Zentrum Dresden-Rossendorf ; Technology Strategy Board ; WOJSKOWA AKADEMIA TECHNICZNA IM.JAROSLAWA DABROWSKIEGO ; Elettra Sincrotrone Trieste ; University of Latvia ; CNRS - Institut des Sciences Biologiques ; LASERLAB-EUROPE ; CONSORCIO PARA EL DISENO, CONSTRUCCION, EQUIPAMIENTO Y EXPLOTACION DEL CENTRO DE LASERES PULSADOS ULTRACORTOS ULTRAINTENSOS ; National Institute for Research and Development for Industrial Ecology ; Lunds universitet ; Forschungsverbund Berlin ; École Polytechnique Fédérale de Lausanne ; FUNDACIO INSTITUT DE CIENCIES FOTONIQUES ; Vilnius University
Grant period2019-12-01 - 2024-11-30
Funding bodyEuropean Union
Call numberH2020-INFRAIA-2019-1
Grant number871124
IdentifierG:(EU-Grant)871124

Note: LASERLAB-EUROPE is the European consortium of major national laser research infrastructures, covering advanced laser science and applications in most domains of research and technology, with particular emphasis on areas with high industrial and social impact, such as bio- and nanophotonics, material analyses, biology and medicine. Recently the field of advanced lasers has experienced remarkable advances and breakthroughs in laser technologies and novel applications. Laser technology is a key innovation driver for highly varied applications and products in many areas of modern society, thereby substantially contributing to economic growth. Through its strategic approach, LASERLAB-EUROPE aims to strengthen Europe’s leading position and competitiveness in this key area. It facilitates the coordination of laser research activities within the European Research Area by integrating major facilities in most European member states with a long-term perspective and providing concerted and efficient services to researchers in science and industry. The main objectives of LASERLAB-EUROPE are to: • promote, in a coordinated way and on a European scale, the use of advanced lasers and laser-based technologies for research and innovation, • serve a cross-disciplinary user community, from academia as well as from industry, by providing access to a comprehensive set of advanced key laser research installations, • increase the European basis of human resources in the field of lasers by training new users, including users in new domains of science and technology and from geographical regions of Europe where laser user communities are still less developed, • improve human and technical resources through technology exchange and sharing of expertise among laser experts and operators across Europe, and through coordinated Joint Research Activities enabling world-class research, innovations and applications beyond the present state-of-the-art.
     

Recent Publications

All known publications ...
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A scintillating fiber imaging spectrometer for active characterization of laser-driven proton beams
High power laser science and engineering 12, e70 () [10.1017/hpl.2024.62] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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High-energy laser facility PHELIX at GSI: latest advances and extended capabilities
High power laser science and engineering 12, e39 () [10.1017/hpl.2024.17] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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Optical probing of ultrafast laser-induced solid-to-overdense-plasma transitions
Light 13(1), 109 () [10.1038/s41377-024-01444-y] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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Proton acceleration from optically tailored high-density gas jet targets
Journal of plasma physics 90(2), 965900201 () [10.1017/S0022377824000461] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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Millijoule ultrafast optical parametric amplification as replacement for high-gain regenerative amplifiers
High power laser science and engineering 11, e48 () [10.1017/hpl.2023.30] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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Laboratory-Based Correlative Soft X-ray and Fluorescence Microscopy in an Integrated Setup
Microscopy and microanalysis 29(6), 2014 - 2025 () [10.1093/micmic/ozad123] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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The role of transient plasma photonic structures in plasma-based amplifiers
Communications Physics 6(1), 9 () [10.1038/s42005-022-01109-5] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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Versatile, compact chirped pulse amplifier pump system for ultrafast optical parametric amplifiers
Optics express 31(3), 5002 - () [10.1364/OE.477610] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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Broadband soft X-ray source from a clustered gas target dedicated to high-resolution XCT and X-ray absorption spectroscopy
Optics express 30(26), 47867 () [10.1364/OE.477726] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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Proton stopping measurements at low velocity in warm dense carbon
Nature Communications 13(1), 2893 () [10.1038/s41467-022-30472-8] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

All known publications ...
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 Record created 2020-09-04, last modified 2023-02-12