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000231924 0247_ $$2CORDIS$$aG:(EU-Grant)861198$$d861198
000231924 0247_ $$2CORDIS$$aG:(EU-Call)H2020-MSCA-ITN-2019$$dH2020-MSCA-ITN-2019
000231924 0247_ $$2originalID$$acorda__h2020::861198
000231924 035__ $$aG:(EU-Grant)861198
000231924 150__ $$aLaser Ionization and Spectroscopy of Actinide elements$$y2019-11-01 - 2024-09-30
000231924 371__ $$aGRAND ACCELERATEUR NATIONAL D'IONS LOURDS$$dFrance$$ehttp://www.ganil-spiral2.eu$$vCORDIS
000231924 371__ $$aHUBNER GMBH & CO KG$$bHUEBNER$$dGermany$$ehttp://www.hubner-germany.com$$vCORDIS
000231924 371__ $$aGottfried Wilhelm Leibniz Universität Hannover$$bLUH$$dGermany$$ehttps://www.uni-hannover.de/de/impressum/$$vCORDIS
000231924 371__ $$aFriedrich Schiller University Jena$$bFSU$$dGermany$$ehttps://www.uni-jena.de/en/start.html$$vCORDIS
000231924 371__ $$aJohannes Gutenberg University of Mainz$$bJohannes Gutenberg University of Mainz$$dGermany$$ehttp://www.uni-mainz.de/eng/$$vCORDIS
000231924 371__ $$aCERN$$bCERN$$dSwitzerland$$ehttps://home.cern/$$vCORDIS
000231924 371__ $$aUniversity of Gothenburg$$bUniversity of Gothenburg$$dSweden$$ehttp://www.gu.se/english$$vCORDIS
000231924 371__ $$aUniversity of Jyväskylä$$bUniversity of Jyväskylä$$dFinland$$ehttps://www.jyu.fi/en/$$vCORDIS
000231924 371__ $$aGSI Helmholtzzentrum für Schwerionenforschung GmbH$$bGSI$$dGermany$$ehttp://www.gsi.de/$$vCORDIS
000231924 371__ $$aUniversity of Groningen$$bUniversity of Groningen$$dNetherlands$$ehttp://www.rug.nl/$$vCORDIS
000231924 371__ $$aM Squared Lasers (United Kingdom)$$bM Squared Lasers (United Kingdom)$$dUnited Kingdom$$ehttp://www.m2lasers.com/$$vCORDIS
000231924 371__ $$aKU Leuven$$bKUL$$dBelgium$$ehttp://www.kuleuven.be/english$$vCORDIS
000231924 372__ $$aH2020-MSCA-ITN-2019$$s2019-11-01$$t2024-09-30
000231924 450__ $$aLISA$$wd$$y2019-11-01 - 2024-09-30
000231924 5101_ $$0I:(DE-588b)5098525-5$$2CORDIS$$aEuropean Union
000231924 680__ $$aLISA aims to train the next generation of atomic, nuclear and laser scientists by conducting research to increase our understanding of the atomic and nuclear properties of the chemical elements known as the actinides. Of long-standing interest to the fields of fundamental atomic and nuclear physics, this effort is an essential prerequisite for unravelling the structure of the superheavy elements at the end of Mendeleev’s table. This knowledge is required for the effective production, identification and handling of these elements, and is thus a necessary foundation for our goals of understanding and exploiting the potential for practical applications of the actinides in the fields of medical physics, nuclear applications and environmental monitoring. Our consortium of world-leading experts in radioactive ion beam research and applications, laser spectroscopy, scientific laser technologies (industrial partners) and nuclear and atomic theorists will recruit and train 15 doctoral students. LISA will form a cohesive and symbiotic collaboration for training young scientists in the pursuit of the following research objectives: Develop laser-based actinide ion beam production and purification techniques; develop laser technology; measurement of ionization potentials and electron affinities; extract atomic and nuclear properties from laser spectroscopy studies; enhance the prospects for direct use of the actinide isotopes themselves (theranostic applications), or the application of techniques for their detection (environmental monitoring). LISA will be structured into 7 work packages (WP), separated according to specific types of technical or research challenges, training, communication and management, but highly interlinked to ensure a close interaction between the ESR fellows. This structure is designed to expose all trainees to the breath of activity types across the network and also to foster working relationships that will endure long after the project ends.
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