Dissipationless topological channels for information transfer and quantum metrology
Akronym
TOCHA
Bidragets beskrivning
The goal of TOCHA is to develop the next generation of topological devices and architectures across which information can flow without losses. This conceptually simple yet technologically and fundamentally challenging requirement is crucial for the development of technologies in fields ranging from information processing to quantum communication and metrology. In each of these areas, the dissipation of information is a key hurdle that leads, for example, to unacceptable thermal loads or error rates. TOCHA will harness topological protection in novel materials and nanoscopic structures to empower electrons, phonons and photons to flow with little or no dissipation and, ultimately, crosslink them within a hybrid platform. This will entail the design of novel topological photonic/phononic waveguides and the engineering of disruptive heterostructures elaborated from the combination of topological insulators and ferromagnetic materials. In the optical domain, this will enable the creation of reflection and scattering free waveguides and, in thermal management, efficient transport and localized dissipation of heat. In electronics, TOCHA will develop ballistic transistors that could operate at THz cut-off frequencies and, for metrology, it will establish a new paradigm for electrical resistance quantization standardization. The hybridization of three distinct quantum particles is expected to lead to novel functionalities, such as the shielding of quantum emitters from phonon-based decoherence processes, or the conversion of information from electronic to optical form and vice versa. TOCHA will gather a young consortium and foster the creation of a new community in Europe on the use of topology for Information and Communication Technologies. Thanks to its high interdisciplinary embodiment involving electronic materials, optics, thermal management and metrology, TOCHA will help advance all levels of the value chain, from fundamental science to engineering and technology.
Visa merStartår
2019
Slutår
2024
Beviljade finansiering
SIMUNE ATOMISTICS SL (ES)
299 375 €
Participant
"INSTITUTE OF OPTICAL MATERIALS AND TECHNOLOGIES "ACADEMICIAN JORDAN MALINOWSKI" - BULGARIAN ACADEMY OF SCIENCES" (BG)
419 895 €
Participant
LEIBNIZ-INSTITUT FUER FESTKOERPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (DE)
79 880.66 €
Third party
PHYSIKALISCH-TECHNISCHE BUNDESANSTALT (DE)
412 186.25 €
Participant
FUNDACIO INSTITUT CATALA DE NANOCIENCIA I NANOTECNOLOGIA (ES)
1 321 500 €
Coordinator
JULIUS-MAXIMILIANS-UNIVERSITAT WURZBURG (DE)
646 006.25 €
Participant
KOBENHAVNS UNIVERSITET (DK)
624 293.75 €
Participant
COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES (FR)
390 544.34 €
Participant
CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS (FR)
411 330 €
Participant
Beviljat belopp
4 997 804 €
Finansiär
Europeiska unionen
Typ av finansiering
Research and Innovation action
Ramprogram
Horizon 2020 Framework Programme
Utlysning
Programdel
EXCELLENT SCIENCE - Future and Emerging Technologies (FET) (5216 FET Proactive (5218 )
Tema
FET Proactive: emerging paradigms and communities (FETPROACT-01-2018Utlysnings ID
H2020-FETPROACT-2018-01 Övriga uppgifter
Finansieringsbeslutets nummer
824140
Identifierade teman
physics, particles, matter, lhc