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hybrid nanoplatform by combining magnetic and fusogenic liposomes with extracellular vesicles. This approach aims to combine the biological properties of extracellular vesicles, particularly their natural
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characterized by strong electronic correlations; these systems exhibit remarkable properties and unconventional electronic states, such as superconductivity, magnetism, metal-insulator transitions, and more. The
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of Grenoble Alpes and Grenoble INP. The PhD student will work in a very dynamic team having the expertise with processing materials in solid and liquid states using external (magnetic, electric, …) fields
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the spin and optical properties of the boron vacancy (VB) defect in hBN, in order to assess its potential for quantum sensing applications, with a focus on magnetic field detection. The objective of the PhD
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world of research and development, as well as for the general public. The hosting team at Institut Néel is Magsup —Magnetism and Superconductivity —, which forms part of the MCBT department. Magnetism and
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experimental methods are available and currently fully operational in the laboratory. Collaborative Environment: Centrifugal instabilities are not limited to magnetized plasma columns in the laboratory but also
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at the IPCMS (Institute of Physics and Chemistry of Materials of Strasbourg), which investigates the electronic, optical, and magnetic properties of atomic-scale structures. The research will be carried out
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motor skills. This PhD project will investigate the emergence of body representations from infancy to childhood by combining functional magnetic resonance imaging (fMRI), electroencephalography (EEG), and
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CNRS Earth & Universe institutes). The laboratory is recognised for its research activities in the following areas: • Plasma physics and fusion, particularly via magnetic confinement, in close
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mass ejections, and the rapid expansion of research into exoplanetary radio emissions using large radio telescopes (NenuFAR, LOFAR). Methods Use and processing of space-based (radio, particle, magnetic