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Académie suisse des sciences naturelles SCNAT

Photon Science Roadmap for Research Infrastructures 2025-2028 by the Swiss Photon Community

This community roadmap summarizes a survey of the Swiss large-scale infrastructure requirements in the broad field of photon science for the years 2025–2028, drawing from the current situation both in Switzerland and abroad. The Swiss Society for Photon Science (SSPh) collected the scientific visions and compiled the needs of the community of photon science, which encompasses all research areas that work to generate, manipulate and detect photons or use them to investigate or control complex assemblies of matter. The roadmap represents the view of the Swiss scientific community in the field of photon science and is a formal element of the process to elaborate the Swiss Roadmap for Research Infrastructures 2023. This bottom-up contribution to the identification and selection of important national and international research infrastructures has been coordinated by the Swiss Academy of Sciences (SCNAT) on a mandate by the State Secretariat for Education, Research and Innovation (SERI).

 

Abela R, Abreu E, Cavalieri A, van Daalen M, Feurer T, Staub U (2021)
Photon Science Roadmap for Research Infrastructures 2025–2028 by the Swiss Photon Community

Swiss Academies Reports 16 (5).

DOI: 10.5281/zenodo.4588917

  • Académies suisses des sciences a+

    Comprendre et agir pour la biodiversité en Suisse

    Le présent rapport dépeint de façon claire et différenciée l’état de la biodiversité en Suisse et les changements qu’elle a subis. Il s’appuie sur les données, les études et les connaissances spécialisées pour décrire l’évolution de la diversité biologique dans les différents milieux. L’accent est porté sur les changements intervenus ces 15 dernières années. Ce document met par ailleurs en évidence les principaux éléments agissant actuellement sur la biodiversité, et les événements politiques ou sociaux qui les accompagnent. Il présente enfin les voies que nous pouvons prendre pour que les générations à venir jouissent d’une base vitale fonctionnelle grâce à une abondante biodiversité.

  • Jeune Académie Suisse JAS

    Impact of AI on Early Career Researchers: Challenges, Opportunities and Responsibilities

    Artificial Intelligence (AI) is rapidly transforming science and is therefore profoundly reshaping the work of Early Career Researchers. Against this backdrop, the publication Impact of AI on Early Career Researchers: Challenges, Opportunities, and Responsibilities, developed by members of the Swiss Young Academy, namely Emmanuel Senft, Sabrina H. Kessler, Pamela Delgado, Devi Bühler, and Alexandre Bovet, offers a timely interdisciplinary reflection on these changes. The booklet examines both the opportunities and risks of AI across five key areas – research, teaching, science communication, policymaking, and sustainability – while also addressing critical issues such as research integrity, data privacy, misinformation, governance, and environmental impact. It further highlights the responsibilities of Early Career Researchers and higher education institutions in promoting AI literacy, transparency, ethical standards, and responsible use of AI in science.

  • Jeune Académie Suisse JAS

    Innovative Teaching Formats at the Science-Society Interface: Reflections and Future Directions in Swiss Higher Education

    Science-society dialogue is crucial for addressing pressing societal challenges. One important avenue for strengthening this link, in an inter- and transdisciplinary perspective, is teaching formats that encourage students to engage in the public sphere. However, an illustrative collection of best practices in Swiss higher education has been lacking so far. This practice-driven report draws on a non-exhaustive stocktake of existing courses in Switzerland and participatory workshops among lecturers. It features illustrative examples from Swiss higher education institutions and introduces a new typology of science-society teaching formats, offering educators a structured way to design and analyze courses across six dimensions. In addition, the publication discusses both the opportunities and challenges of implementing such teaching formats. To further advance science-society education, the report identifies three priority areas for action.

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