EUROfusion

Implementation of activities described in the Roadmap to Fusion during Horizon Europe through a joint programme of the members of the EUROfusion consortium

Grant period2021-01-01 - 2025-12-31
Funding bodyEuropean Union
Call numberEURATOM-2021-ADHOC-IBA
Grant number101052200
IdentifierG:(EU-Grant)101052200

Note: EUROfusion’s updated Fusion Research Roadmap aims to acquire the necessary knowledge to start constructing a demonstration fusion power plant (DEMO) five years after ITER is in full-power operation. DEMO will deliver fusion electricity to the grid early in the second half of the century. The Roadmap has been articulated in eight different Missions. The present proposal has the goal of implementing the activities described in the Roadmap during Horizon Europe through a joint programme of the members of the EUROfusion Consortium, with the following high-level objectives: 1. Construct and commission ITER; 2. Secure the success of future ITER operation via preparation and experiments on present devices; 3. Develop the conceptual design of a DEMO fusion power plant; 4. Finalise the design and construct a fusion spectrum neutron source (IFMIF-DONES); 5. Advance the stellarator as an alternative approach to fusion power plants; 6. Prepare the ITER and DEMO generations of scientists, engineers and operators; 7. Promote innovation and European industry competitiveness in fusion technology and beyond. The ITER success remains an important overarching objective of the programme and much attention is devoted to ensure that ITER operation is properly prepared, and that a new generation of scientists and engineers is thoroughly educated and trained for its exploitation. DEMO is the only step between ITER and a commercial fusion power plant. To achieve the goal of fusion electricity demonstration in the early 2050-ies, the DEMO Conceptual Design has to be completed by 2030 at the latest, to allow the start of the Engineering Design Activities. DEMO cannot be defined and designed by research laboratories alone, but requires the full involvement of industry in all technological and systems aspects of the design. Therefore, specific provisions for the involvement of industry in the Consortium activities are envisaged.
   

Recent Publications

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The Rayleigh–Taylor instability in viscous fluids: The finite thickness effect revisited
Physics of fluids 37(2), 022130 () [10.1063/5.0254251] BibTeX | EndNote: XML, Text | RIS

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Rayleigh–Taylor instability in non-ideal finite thickness media
European physical journal special topics ST, n.a. () [10.1140/epjs/s11734-025-02056-2] BibTeX | EndNote: XML, Text | RIS

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Prepulse-induced changes in ion acceleration direction: Insights from TNSA regime experiments and simulations at PHELIX
Physics of plasmas 32(8), 083105 () [10.1063/5.0278103] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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On-Shot Detection of Fission Isotopes of 238U, Produced by Laser-Driven X-Rays
[10.5281/ZENODO.16567229] BibTeX | EndNote: XML, Text | RIS

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Quasi-irrotational growth rate for the Rayleigh-Taylor instability in accelerated elastic and viscous layers
Physical review / E 112(1), 015105 () [10.1103/yv14-mrsx] BibTeX | EndNote: XML, Text | RIS

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On-shot detection of fission isotopes of $^{238}U$, produced by laser-driven x-rays
Physics of plasmas 32(7), 073106 () [10.1063/5.0251735] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

All known publications ...
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 Record created 2023-08-27, last modified 2023-08-27