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using X-ray and neutron diffraction Investigation of ionic transport by impedance spectroscopy and complementary electrochemical methods Determination of electronic, vibrational and vibronic structure
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breakdown or electromigration). Compared to other imaging modalities such as electron microscopy, X-ray microscopy is non-destructive and hence ideally suited for in-situ and operando 3D imaging. However, at
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breakdown or electromigration). Compared to other imaging modalities such as electron microscopy, X-ray microscopy is non-destructive and hence ideally suited for in-situ and operando 3D imaging. However, at
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. magnetic order, ferroelectric polarization configuration, electronic and ionic transport. In this experimental Doctoral project, you will develop topochemical modifications of functional layered perovskites
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structural, electronic, and magnetic functionality. Thin-film structural and functional characterization using X-ray diffraction, scanning-probe microscopy, magnetometry, synchrotron-based experiments (e.g
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materials. The work will involve sample synthesis, X-ray diffraction, optical spectroscopy experiments, as well as magnetothermodynamic, magnetomechanical and magnetoacoustic measurements at mK-temperatures