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EU funding (€5,000,000): Accelerators and other Research Infrastructures for Radiation Effects Research Hor25 May 2026 EU Research and Innovation programme "Horizon"

Overview

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Accelerators and other Research Infrastructures for Radiation Effects Research

Radiation effects induced by energetic particles in electronic and photonic components and systems are a critical concern for space, avionics, high-energy physics, nuclear energy, IT infrastructure and many other mission-critical applications. RADNEXT 2030 builds on the success of the H2020 RADNEXT project (https://radnext.web.cern.ch/) to establish a sustainable, transnational, and inter-disciplinary radiation testing and research infrastructure supporting both scientific excellence and industrial competitiveness in Europe. The RADNEXT 2030 consortium brings together over 40 institutions from across Europe and beyond, including research laboratories, universities, space and nuclear agencies, and industrial stakeholders. It integrates more than 30 world-class irradiation facilities, covering heavy ions, protons, neutrons, and other beam types, along with digital tools, training resources, and best practices to support advanced radiation effects testing and qualification. RADNEXT 2030’s main objectives are to (i) coordinate and provide high-quality transnational access to radiation facilities, (ii) foster harmonization, innovation, and sustainability in radiation effects testing, (iii) support European users and SMEs through training and tailored assistance, and (iv) position Europe as a global leader in radiation effects research and qualification. RADNEXT 2030 will be crucial for CERN in two complementary ways. Firstly, it will enable access to CERN radiation effects researchers across multiple groups, departments and sectors to world-class radiation effects testing facilities. In fact, CERN has been the number one RADNEXT user, with more than 20 experiments completed. Secondly, the project will provide the necessary framework for radiation effects research access to CHARM and HEARTS@CERN, partially funded by the EU.


Funded Companies:

Company name Funding amount
Airbus Defence AND Space SAS ?
Academisch Ziekenhuis Groningen €278,800
Agenzia Nazionale Per LE Nuove Tecnologie, L'Energia E LO Sviluppo Economico Sostenibile €68,083
Atron Metrology €26,040
Australian Nuclear Science AND Technology Organisation €39,640
Centre Antoine Lacassagne €39,000
Centre National de la Recherche Scientifique CNRS €0.00
European Synchrotron Radiation Facility €169,800
Fondazione Centro Nazionale Di Adroterapia Oncologica €108,000
Grand Accelerateur National d'Ions Lourds €126,940
GSI Helmholtzzentrum FUR Schwerionenforschung GmbH €292,006
Helmholtz-Zentrum Berlin FUR Materialien UND Energie GmbH €22,625
Helmholtz-Zentrum Dresden-Rossendorf e. V. €28,200
Holland Particle Therapy Centre B.V. €285,000
Institut Curie €189,480
Institut Max VON Laue - Paul Langevin €42,936
Jyvaskylan Yliopisto €195,920
Katholieke Universiteit Leuven €27,117
Middle East Technical University €22,200
Organisation Europeenne Pour LA Recherche Nucleaire €1,155,159
Paul Scherrer Institut €219,000
Physikalisch-Technische Bundesanstalt €57,600
Radtest Ltd. €26,729
Sàrl Trad €22,452
Tau Systems Inc. €79,677
The Henryk Niewodniczanski Institute OF Nuclear Physics, Polish Academy OF Sciences €19,000.00
Triumf €255,300
United Kingdom Research and Innovation €426,073
Universidad de Sevilla €82,500
Universitaet Bern €25,400
Universite Catholique de Louvain €281,983
Universite de Montpellier €150,000
Universite Jean Monnet €142,000
Uppsala Universitet €40,500
Ustav Jaderne Fyziky AV CR Vvi €54,840

Source: https://cordis.europa.eu/project/id/101292931

The filing refers to a past date, and does not necessarily reflect the current state. The latest known state is available on the following page: Airbus Defence AND Space SAS, Toulouse, France.