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EN
The optimization of the magnetic properties of materials for a wide range of technologies requires a dynamic iteration between synthesis, property measurements and the evaluation/control of microstructure (physical, chemical & magnetic) at the appropriate length scales. In addition, atomically engineered thin films and nanostructures offer new opportunities to elucidate the physics of magnetism, test new theories and most importantly build new materials with unique anisotropy, transport and hysteretic properties. These interests arise from advances in materials synthesis, an increased appreciation of the degree to which magnetic properties are influenced by microstructure and interfacial processes and the ability to characterize them by electron-optic and x-ray scattering/dichroism techniques. In this paper, we present an overview of our recent work in these areas, involving an integrated approach of growth/synthesis, property measurements and advanced characterization.
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