THRILL

Technology for High-Repetition-rate Intense Laser Laboratories

Grant period2023-01-01 - 2026-12-31
Funding bodyEuropean Union
Call numberHORIZON-INFRA-2022-TECH-01
Grant number101095207
IdentifierG:(EU-Grant)101095207

Note: The THRILL project deals with providing new schemes and devices for pushing forward the limits of research infrastructures (RI) of European relevance and ESFRI landmarks. To do so, the project partners have identified several technical bottlenecks in high-energy high-repetition-rate laser technology that prevent it from reaching the technical readiness level required to technically specify and build the needed devices, and guaranteeing sustainable and reliable operation of such laser beamlines at the partnering RIs. Advancing the technical readiness of these topics is strategically aligned with the long-term plans and evolution of the ESFRI landmarks FAIR, ELI (-BL) and Eu-XFEL, and RI APOLLON, bringing them to the next level of development and strengthening their leading position. The project is well focused and it is deliberately restricted to three enabling technologies, which require the most urgent efforts and timely attention by the community: high-energy high-repetition-rate amplification, high-energy beam transport and optical coating resilience for large optics. To reach our goals, the major activity within THRILL will be organized around producing several prototypes demonstrating a high level of technical readiness. Our proposal is addressing not yet explored technical bottlenecks - such as transport over long distances of large-aperture laser beams via relay imaging using all-reflective optics - and aims at proposing concrete steps to increase the performances and effectiveness of the industrial community through the co-development of advanced technologies up to prototyping in operational environments. The project is not only pushing technology, it is also offering an outstanding opportunity to train a qualified work force for RIs and industry. With this in mind, the structure of THRILL promotes synergetic work, fast transfer to industry and integrated research activities at the European level. Access to the RIs will be granted as in-kind contribution.
   

Recent Publications

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Coherent combining of large-aperture high-energy Nd:glass laser amplifiers
High power laser science and engineering 13, e4 () [10.1017/hpl.2024.84] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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Apollon Real-Time Adaptive Optics: astronomy-inspired wavefront stabilization in ultraintense lasers
High power laser science and engineering 13, e29 () [10.1017/hpl.2025.16] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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The influence of flashlamp water cooling on long-term aberrations in large aperture Nd:glass amplifiers
Research Using Extreme Light Infrastructures: New Frontiers with Petawatt-Level Lasers VI : [Proceedings] - SPIE, 2025. - ISBN 9781510688667 ; 9781510688674 - doi:10.1117/12.3058409
Research Using Extreme Light Infrastructures: New Frontiers with Petawatt-Level Lasers VI, PraguePrague, Czech Republic, 7 Apr 2025 - 11 Apr 20252025-04-072025-04-11
SPIE () [10.1117/12.3058409] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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High-energy laser facility PHELIX at GSI: latest advances and extended capabilities
High power laser science and engineering 12, e39 () [10.1017/hpl.2024.17] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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Zernike-coefficient Extraction via Helical Beam Reconstruction for Optimization (ZEHBRO) in the far field
High power laser science and engineering 11, e86 () [10.1017/hpl.2023.63] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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 Record created 2023-08-27, last modified 2023-08-27