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of the researcher span from advanced transmission electron microscopy ((S)TEM) to light microscopy and includes structure analysis by electron and x-ray diffraction (ED and XRD) and correlated evaluation of magnetic
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main contributor to the In-situ X-ray diffraction experiments performed for studying the formation of new silicides using both large volume presses such as multi-anvil and Paris-Edinburgh Presses
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deposition new types of ultra-thin magnetic films. The growth will be performed either by PLD or off-axis sputtering. structural characterizations including X-ray diffraction, reciprocal space mapping, AFM
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undergo comprehensive material characterization to assess layer quality through techniques such as high-resolution X-ray diffraction (HRXRD), X-ray photoelectron spectroscopy (XPS), ellipsometry, atomic
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-ray diffraction (XRD) to study the materials at the micro and as well as access to national and international facilities for example synchrotron based experiments. Applicants should have, or expect
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of immunity to environmental influences. Conventional experimental techniques such as dilatometry, optical and electron microscopy, electron backscatter diffraction and x-ray diffraction with Rietveld
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) in Ultrafast X-ray Science of Quantum Materials using THz/mid-IR sources The Position Investigate THz-/MIR-driven quantum materials with soft X-ray spectroscopy and diffraction (XAS, RIXS, XRD) Work
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ceramic materials by electrospinning for application in ceramic electrochemical reactors; use of different characterization techniques, including impedance spectroscopy, thermogravimetry, dilatometry, X-ray
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in a vibrant and multidisciplinary and multinational environment (E) Experience in X-ray diffraction/imaging/spectroscopy techniques preferably synchrotron based (D) Experience in raising key issues
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phonon states in a variety of engineered quantum systems. https://www.oist.jp/research/research-units/qmsu [Work content and job description] -Basic evaluation of substances and materials, including X-ray