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be highly motivated and autonomous, and have a solid knowledge of materials science. Knowledge of electrochemistry and fuel cell/water electrolysis technology will be a key asset. Proficiency in French
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of individual charges in real time. Researchers will use advanced germanium-based materials with exceptional quantum properties to pioneer new methods for manipulating quantum states. The anticipated outcomes
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over a very large area, using sputtering deposition techniques. The overall objective of the project is to define the parameters of this technology (integration of high-performance phase-change materials
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based on PDMS, thermoplastics, or other polymeric materials; Surface chemistry and functionalization for the engineering of biointerfaces; Data analysis, signal processing, and scientific programming
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for studying and engineering electronic properties in quantum materials. By stacking different two-dimensional (2D) materials, it is possible to create systems with new and tunable properties. In
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materials under extreme conditions of intense magnetic fields (exceeding 90 T) and very low temperatures (down to 100 mK). Scientific targets will be to investigate the properties of quantum materials (UTe2
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organisation comprising approximately 750 researchers, engineers, and technicians. It has significant technical capabilities for designing, developing and implementing the experimental equipment required for its
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secondary ion mass spectrometry (SIMS), with the support of the engineers from the C2N technological platform. - design and fabrication of superconducting nanowires, taking advantage of the nanofabrication