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. The primary experimental technique will be broadband dielectric spectroscopy. The PhD candidate will also have the opportunity to become familiar with and apply unique high-pressure research techniques
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spectroscopy and optical microscopy is expected. Familiarity with Matlab, Python, FORTRAN/C/C++, LaTeX, and other software tools will also be appreciated. Website for additional job details https
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to detect, image, and analyze ferroelectric domains in 2D ferroelectric heterostructures. You will employ advanced cryogenic micro-spectroscopy, and reflection contrast imaging to visualize domain structures
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in such materials. You will play a central role in imaging ferroelectric domains in a new class of 2D ferroelectrics using state-of-the-art cryogenic micro-spectroscopy techniques. This work involves
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-resolved spectroscopy, testing reusability of heterostructures, dielectric engineering concepts, and join work with sustainability experts; acquiring knowledge and tools for life-cycle and sustainability
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analysis using microscopy and time-resolved spectroscopy, testing reusability of heterostructures, dielectric engineering concepts, and join work with sustainability experts; acquiring knowledge and tools
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and spectroscopy. What will you do Focus on the investigation of transport and optical properties of molecules and other low dimensional materials (transition-metal dichalcogenides, boron nitride
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or an equivalent mix of education and relevant experience in similar role. Demonstrated expertise in finite element modeling (COMSOL, Abaqus,FEniCS/MOOSE) and dielectric spectroscopy (BbDS/TSDC). Strong record
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the enhancement will require entirely novel designs that exhibit multiple resonances provided by e.g. plasmonic metasurfaces (link). About this position In this position you will leverage novel dielectric and
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between PD level and life expectancy. Performing ageing studies along with diagnostics (e.g., PD and dielectric spectroscopy) gives insight in the relevance and information that could be derived from PD