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of spintronics: the generation and detection of orbital angular momentum currents, in analogy to spin transport. Phenomena that allows us to generate and detect orbital currents will be studied, such as the
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developments and numerical calculations, especially for objects containing hundreds or thousands of particles. In those cases, it may be convenient to separate the system into several subsystems, some of which
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zero net magnetization. The objective is to understand the interplay between magnetic and structural degrees of freedom gives that give rise to this novel phase, and to explore how the properties can be
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Description of the offer : To further advance and refine novel techniques—such as x ray detected ferromagnetic resonance (XFMR) with polarized soft x rays in reflectivity and diffraction geometries
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. Objectives: -Fabrication, characterization and modeling of the composite magnetic materials. -Modeling, fabrication, characterization and of the embedded power magnetic core inductors. -Implementation
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Description of the offer : The main objective of this PhD thesis is to unravel the microscopic mechanisms by which the hydrogen affects the properties of intermetallic magnets. To achieve this goal
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of the spin-charge current interconversion rates efficiency by DC spin pumping, spin-torque ferromagnetic resonance, and/or second harmonic detection will be performed. Contact: apomar AT icmab DOT es
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order through rigorous experimental studies as well as simulations. Proof-of-principle studies to observe the response of generated spin-textures to magnetic fields and electrical currents will be carried