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transport. However, it has been demonstrated that applying a second, DC magnetic field can stabilise the levitating sample and substantially reduce the flow velocity within the liquid. This opens
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tools for assessing material lifetime and performance, in connection with the data architectures developed within the REFFRACTEUR project. All modelling developments will be implemented in the open-source
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parameterization of turbulent transport in this astrophysical context remain open questions. This thesis will be part of a joint research program with colleagues in Toulouse (Laplace and IRAP) and Marseille (PIIM
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an exceptional know-how and experimental methodology, in a high-level scientific environment. The context of frequency metrology requires to master and control the noise sources of the experimental setup as