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-based additive manufacturing (MEX AM) to print both soft and hard structural or electronic materials (e.g. composites with conductive, ferroelectric, dielectric, magnetic and other performance-enhancing
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at radiochemical laboratories of PSI, molecular scale investigations of water and proton transport by quasi-elastic neutron scattering QENS at SINQ / PSI, and dielectric characterization of thin clay films at TU
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on the ultrafast response of dielectric materials driven by intense laser fields. The central goal is to understand how strong laser excitation induces ionization, plasma formation, nonlinear optical effects, and
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clusters and dielectric nanoparticles from molecular beams to levitated optomechanics. We work on novel tools for quantum sensing, mass spectrometry and biomolecular chemistry. Our team is member of
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theoretical and experimental physics: • Theoretical Physics: Condensed Matter, High Energy Physics, Astrophysics, Cosmology, General Relativity. • Experimental Physics: Laser Spectroscopy, Dielectric and THz