2. Physique appliquée
Chair: Prof. Mike Seidel, Dr. Fabio Avino
Applied physics provides essential tools and methodologies for addressing scientific challenges across a wide range of scales, from nuclear and astrophysical processes to advanced technologies for fusion, sensing, and communication. Recent developments include high-precision isotopic and spectrometric techniques for astrophysics, fusion research, and environmental monitoring; advanced plasma diagnostics and modeling to improve the understanding of boundary plasmas and plasma–wall interactions in tokamak devices; and ultrafast laser-based methods for beam characterization and plasma spectroscopy. In parallel, progress in micro- and nanotechnologies—encompassing semiconductor detectors, magnetic nanostructures, spin-wave devices, and wavefront correction techniques—continues to drive innovation in imaging, high-frequency electronics, and communication systems.