The technical and scientific work performed and the main achievements during the 30 months of the THRILL project are listed below for all technical work packages:
- Advanced Laser Architecture (WP3): We conducted a study within the end-user community and published a set of recommendation for the next generation of high-energy lasers at European RIs (Deliverable 3.1). As a complementary approach for reaching high-energy laser pulses at high repetition rate, we demonstrated for the first time the coherent combination of high-energy beams (Task 3.3) and published the results(DOI:10.1017/hpl.2024.84). We made significant progress in the development of an open-source holistic simulation environment for high-energy laser design and performance assessment: the OPOSSUM framework (
https://www.thrill-project.eu/opossum/(si apre in una nuova finestra)). We also identified considerable interest from the community in such a simulation platform.
- High-Repetition-Rate Amplification (WP4): We performed a full characterization of the ELI ATON amplifier under thermal load and published our findings (Deliverable 4.1). We scaled up Amplitude's PAMDAM amplifier module to an aperture of 200 mm in diameter and characterized it. The results are available as part of Deliverable 4.2. We explored GSI's large aperture laser amplifier operation under thermal load and propose an improved design, the characterization of which is planned for 2026.
- Beam Transport and Beam Quality (WP5): We demonstrated real-time adaptive optics (RTAO) at the Apollon facility (DOI: 10.1017/hpl.2025.16). We designed and characterized a scaled-down version of an ajustable focusing system, which allows to vary the focus size of a large laser beam, without changing its location (Deliverable 5.3).
- Optics for High-Energy Lasers (WP6): We commissioned the thin-film coating chamber ELIAS at ELI for large optics and characterized first proof-of-principle coatings. We optimized anti-reflective coatings including a layer of Indium-Tin-Oxide (ITO) for the development of large-aperture Pockels cells. In oder to support the characterization of the produced coatings, we completed the commissioning of the laser-induced damage-threshold measurement station at ELI.