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will be to analyze the performances of ultrathin hBN flakes (down to the monolayer limit) doped with VB centers for quantitative magnetic field imaging at cryogenic temperature (4K). The 2D quantum
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on coordinated campaigns combining synthesis and multi-scale spectroscopy. The materials, synthesized at IRCELYON with independent control of phase, doping, and defects, will be characterized there by XPS/UPS in
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include doped oxides or composites engineered to enhance ionic mobility while suppressing electronic conductivity. A key objective will be to understand the relationships between chemical composition
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of radionuclide-doped insoluble organic matter under environmentally realistic geochemical conditions; Determining labile and inert radionuclide fractions at different incubation times using complementary
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heating. We have developed a custom microfabricated chip based on doped Si electrodes etched on a SiO2 insulating layer. The chip has been characterized and exhibits both long trapping times and low heating
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scaling limits of conventional silicon electronics. By engineering crystal symmetry and magnetic order through controlled chemical doping, the research aims to tune the quantum metric and realize giant