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ferroelectric (FE) layer exerts an influence on a ferromagnetic (FM) layer, which in turn is interfaced with a superconducting (SC) layer, ultimately leading to electric control of the superconducting layer
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metamaterials combining advanced ferromagnetic materials and noble metal nanostructures, their precise characterization with state-of-the-art instruments to measure their spatio-temporal functional properties
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, gate tunable electron fillings, various emergent electronic phases have been identified, most notably superconductivity, ferromagnetism, or Mott insulators, all driven by the Coulomb interaction between
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with a broad toolkit: magneto-transport, ferromagnetic resonance and propagating spin-wave spectroscopy, and synchrotron-based scanning transmission X-ray microscopy (STXM) for direct, time-resolved
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processing. Conventional EM approaches for microstructure monitoring are often dominated by magnetic permeability effects and are therefore restricted to ferromagnetic materials below the Curie temperature. As
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. Therefore it is not known if the response is diamagnetic or ferromagnetic, an essential question to elucidate the nature of this new kind of phase transition. To determine whether this phase is diamagnetic
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at Coventry University, UK, and the National Academy of Sciences of Ukraine in Lviv, Ukraine. The current research topics include disorder effects on phase transitions (diluted ferromagnets, long-range