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024 7 _ |a G:(EU-Grant)823897
|d 823897
|2 CORDIS
024 7 _ |a G:(EU-Call)H2020-MSCA-RISE-2018
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|2 CORDIS
024 7 _ |a corda__h2020::823897
|2 originalID
035 _ _ |a G:(EU-Grant)823897
150 _ _ |a Advanced theoretical network for modeling light matter interactIon
|y 2019-03-01 - 2024-02-29
371 _ _ |a CNRS - Institut des Sciences Biologiques
|b INSB
|d France
|e http://www.cnrs.fr/insb/
|v CORDIS
371 _ _ |a Imperial College of Science Technology and Medicine
|b Imperial
|d United Kingdom
|e http://www.imperial.ac.uk
|v CORDIS
371 _ _ |a Queen's University Belfast
|b QUB
|d United Kingdom
|e http://www.qub.ac.uk/
|v CORDIS
371 _ _ |a New Bulgarian University
|b NBU
|d Bulgaria
|e http://www.nbu.bg/entrance.php?lang=1
|v CORDIS
371 _ _ |a Forschungsverbund Berlin
|b FVB
|d Germany
|e http://www.fv-berlin.de/organisation-1/history
|v CORDIS
371 _ _ |a FYZIKALNI USTAV AV CR V.V.I
|b IP-ASCR
|d Czech Republic
|e http://www.fzu.cz
|v CORDIS
372 _ _ |a H2020-MSCA-RISE-2018
|s 2019-03-01
|t 2024-02-29
450 _ _ |a ATLANTIC
|w d
|y 2019-03-01 - 2024-02-29
510 1 _ |0 I:(DE-588b)5098525-5
|a European Union
|2 CORDIS
680 _ _ |a The ATLANTIC project is aiming at developing a network of advanced theoretical modeling of laser-matter interaction that will foster the development of novel theories by bridging the mathematical descriptions within a consortium of scientific groups who have pioneered these formalisms. These physical models address in details the timescales from the attosecond to the microsecond and the spatial scales from the nanometer to the millimeter, providing accurate but partial predictions of experimental data in a disjoint manner. Connecting the respective formalisms of these communities will enable to address phenomena that remained unexplained so far and to achieve beyond state of art capabilities. First activity will be directly interfacing the simulation results provided by participants using mathematical parametrizations generated from first-principle concepts to the large spatial scale models, enabling to predict the consequences of laser-triggered quantum effects within an efficient simplified formalism. The secondment periods will be used to develop hybrid theories made possible by training research staffs and novel generations to mutually understand and contribute to the development of each others theoretical descriptions. Interdisciplinarity is at the core of this project as it will be bridging several fields of science: ultrafast phenomena, nonlinear optics, condensed matter physics, quantum chemistry, materials engineering, and laser-materials processing. Within the action, novel formalisms will be developed and emerging applications such as harmonic generation, THz wave generation, laser nanostructuring, materials functionalization, complex materials engineering, compound materials science might be further elucidated (described), and young specialists will be trained.
909 C O |o oai:juser.fz-juelich.de:869395
|p authority:GRANT
|p authority
909 C O |o oai:juser.fz-juelich.de:869395
970 _ _ |a oai:dnet:corda__h2020::06b525eb83307348a99af3ce892de98e
980 _ _ |a G
980 _ _ |a CORDIS
980 _ _ |a AUTHORITY


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Marc 21