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-dimensional (3D) materials which are facing several obstacles including (i) a limited sensitivity resulting from the dim proximity that can be achieved between the quantum sensor and the target sample, and (ii
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/acsphotonics.3c01104). This method is based on the combination of a color two-photon excitation method developed at the LOB, automated serial sectioning, and the 'brainbow' approach developed at the IdV allowing
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level or self-assembled into aggregates, - colour centres in wide bandgap semiconductor nanostructures (ZnO, hBN, SiC), - low dimensional hybrid perovskites. We are also studying their coupling
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