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-level electronic system to induce sufficiently strong anharmonicity, thereby enabling its manipulation and readout. To benefit from a more intense electromechanical coupling, we now aim to study the
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range of state-of-the-art structural biophysics platforms, including nuclear magnetic resonance (NMR), X-ray diffraction, mass spectrometry, electron microscopy, atomic force microscopy, and other
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electron spin resonance STM (ESR-STM). A recent work[1] and measurements in the group, Fig. 1, have shown that spin-polarized and ESR-STM allowed to characterize the spin-excitation spectrum of individual Fe
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an equally innovative interdisciplinary approach: collaboration between Experimental Mechanics and Physics (PMMH) and Computer Graphics (inverse problems at LJK and printability at LORIA). These disciplines
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, environment and ecology, transportation, robotics, energy, culture, and artificial intelligence. Presentation of CNRS as an employer: https://www.cnrs.fr/en/cnrs Presentation of IRISA as the host laboratory
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physicochemical properties of the material under study. Xe will be introduced by ion implantation, and the samples will be subjected to irradiation treatments on accelerators, favoring either electronic effects
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activity of the MOLTECH-Anjou Laboratory focuses on the development of molecular materials, whether organic or hybrid organic-inorganic, supporting high-visibility research areas such as organic electronics
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spectroscopy, the project seeks to access the complex charge susceptibility, collective excitations, and emergent many-body phenomena in programmable electronic systems. The long-term goal is to bridge
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and X-rays) The UPX (Ultrafast Particles and X-rays) group is one of the main research teams within the LOA. Its research focuses on the generation of charged particles—primarily electrons—and
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microgrids integrating intermittent renewable energy sources (solar, wind), storage systems (batteries, hydrogen), power electronic converters, and controllable loads. These complex cyber-physical