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A PhD Thesis on “Magnetic and electronic properties of doped tetragonal CuO films” was funded through the "Research Initiatives in Grenoble Alpes" program (IRGA) of the University Grenoble Alpes and
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Description of the offer : PhD scholarship to work on a novel sensing approach exploring spin transfer torque (STT) for magnetic field sensing in perpendicular anisotropy magnetic tunnel junctions
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unprecedented development of THz spintronics. However, these works are mostly focused on emission and there is a clear need for efficient scheme for THz detection. In this PhD project, we propose to use
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-controlled via spin-orbit coupling in a non-volatile manner, by a ferroelectric state. This opens up new programmable functionalities, such as the FESO (Ferro Electric Spin Orbit) technology, enabling the non
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to develop a new form of Nd-Fe-B magnet by redesigning the magnet microstructure with innovative, single-grain in-situ grain-boundary engineering. The PhD program will focus on the most fundamental aspects
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our pioneering approach, SWs find their ignition in the propagation of surface acoustic waves (SAWs), a well-established technology already employed in contemporary sensors, filters, and microwave