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nanofabrication, but they have the great advantage of emitting single photons at telecom wavelengths. This PhD aims at understanding and controlling the optical coherence properties of individual color centers
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of calculated reciprocity. The study will involve a comparison between several species of primates (capuchin monkeys, baboons, great apes, humans), which will enable us to contrast the cognitive and social
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crack initiation and propagation; Development and validation of a digital twin with an appropriate level of maturity; Proposal and evaluation of new cluster architectures; Validation of optimized
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Science, with strong skills in experimental techniques and a keen interest in modeling. He/She must demonstrate high motivation, experimental rigor, the ability to work in a multidisciplinary team, and
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, attracting great interest for both fundamental studies and spintronic applications. To date, the main focus of the community so far has been on topological magnetization structures in two-dimension (2D
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, particularly Graph Neural Networks (GNNs), which show great promise. These methods have already demonstrated performance at least comparable to current Track Finding algorithms, with significant room for further
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(NH3) constitutes a very promising solution for industrial applications. In particular, the partial cracking of ammonia provides energy-efficient NH3/N2/H2 mixtures that can be used in combustion systems
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to light or heat, diazirines decompose into carbenes with the irreversible loss of nitrogen gas. Carbenes are highly reactive species with great potential in organic chemistry, since they partake in
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to counter decoherence. We are looking for candidates with a training in atomic and/or quantum physics, optics, or general physics. Experimental and/or instrumental training will be a great addition, as