001     443502
005     20230212181100.0
024 7 _ |a G:(EU-Grant)863155
|d 863155
|2 CORDIS
024 7 _ |a G:(EU-Call)H2020-FETOPEN-2018-2019-2020-01
|d H2020-FETOPEN-2018-2019-2020-01
|2 CORDIS
024 7 _ |a corda__h2020::863155
|2 originalID
035 _ _ |a G:(EU-Grant)863155
150 _ _ |a Novel Spin-Based Building Blocks for Advanced TeraHertz Applications
|y 2020-01-01 - 2023-12-31
371 _ _ |a FRAUNHOFER GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V.
|b Fraunhofer
|d Germany
|e http://www.fraunhofer.de
|v CORDIS
371 _ _ |a Johannes Gutenberg University of Mainz
|b Johannes Gutenberg University of Mainz
|d Germany
|e http://www.uni-mainz.de/eng/
|v CORDIS
371 _ _ |a CNRS - Institut des Sciences Biologiques
|b INSB
|d France
|e http://www.cnrs.fr/insb/
|v CORDIS
371 _ _ |a THALES SA
|b THALES
|d France
|e http://www.thalesgroup.com
|v CORDIS
371 _ _ |a Uppsala University
|b Uppsala University
|d Sweden
|e https://www.uu.se/en/
|v CORDIS
371 _ _ |a Technical University of Ostrava
|b Technical University of Ostrava
|d Czechia
|e https://www.vsb.cz/en
|v CORDIS
371 _ _ |a Freie Universität Berlin
|b FU
|d Germany
|e http://www.fu-berlin.de/en/
|v CORDIS
372 _ _ |a H2020-FETOPEN-2018-2019-2020-01
|s 2020-01-01
|t 2023-12-31
450 _ _ |a s-NEBULA
|w d
|y 2020-01-01 - 2023-12-31
510 1 _ |0 I:(DE-588b)5098525-5
|a European Union
|2 CORDIS
680 _ _ |a s-NEBULA explores and develops a revolutionary approach to TeraHertz (THz) technology, both for generation and detection of THz radiation, initiating the new field of spin-based TeraHertz (s-THz) technology, a game changer for the future of THz field. The ambition of s-NEBULA is to provide a platform of room-temperature innovative spin-based THz building blocks, arising from novel combinations of magnetism and optics. s-NEBULA will provide cutting-edge solutions to solve bottleneck scientific issues in the THz field motivated by clear needs in judiciously chosen target applications. These include variable-baseline broadband pulsed emitters and voltage-controlled compact detectors for non-destructive testing (NDT), intrinsically-modulated CW emitters for THz communication and polarization-programmable emitters for ellipsometry. We will demonstrate innovative schemes for THz emission using spin-orbit interfaces targeting optically driven s-THz pulsed emitters with bandwidth > 20 THz, with enormous potential for NDT applications. For THz communication, data traffic densities of several Tbps/km2 are predicted for 5G networks, but not a single THz data link beyond2 THz s-NEBULA will develop high-power tunable CW emitters working beyond 5 THz. Besides, we will investigate a disruptive approach combining antiferromagnetic materials with direct voltage rectification effects, targeting a tunable & compact detector, key element for on-chip THz systems of tomorrow. Furthermore, combining THz radiation with magnetism enables an extra lever to control the emitted wave; intrinsic modulation/demodulation becomes possible, as well as polarization control for innovative schemes in ellipsometry. All these approaches are not possible with existing THz technologies. The consortium gathers leading European expertise in significantly diverse areas (optics, magnetism, materials preparation, advanced theory, industrial integration, THz metrology) that will enable multi-disciplinary work.
909 C O |o oai:juser.fz-juelich.de:879367
|p authority:GRANT
|p authority
909 C O |o oai:juser.fz-juelich.de:879367
970 _ _ |a oai:dnet:corda__h2020::fe1087364622a7eee862f1431f86a675
980 _ _ |a G
980 _ _ |a CORDIS
980 _ _ |a AUTHORITY


LibraryCollectionCLSMajorCLSMinorLanguageAuthor
Marc 21