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nanostructures—developed for tunable Josephson junctions in quantum devices—using high-resolution transmission electron microscopy (TEM). Currently, quantum processors suffer from short coherence times due
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characterization using TEM techniques such as scanning transmission electron microscopy, convergent beam electron diffraction, electron energy loss spectroscopy, and geometrical phase analysis Investigation
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, transmission lines or impedance-matching techniques. Spectrum analyser measurements. Vector network analyser measurements. RF receiver or wireless-system characterisation. Design and assembly of RF or electronic
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Evolution Under Ion Irradiation using transmission electron microscopy. In situ transmission electron microscopy (TEM) is a powerful characterization technique that can be used to provide a comprehensive
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“Investigation of the structure-property connection of chiral Au nanoparticles by advanced transmission electron microscopy” under the supervision of Prof Sara Bals The vacancy is situated in the framework
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Spectroscopy with Electrons (ER-C) at Forschungszentrum Jülich is a center of excellence in advanced transmission electron microscopy and spectroscopy, addressing problems in materials science, solid-state
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: concentration profile analysis by Secondary Ion Mass Spectrometry (SIMS), transmission electron microscopy (TEM), Raman spectroscopy, and X-ray absorption spectroscopy. This thesis is part of the European FIGARO
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-paracrystalline (SPC) microstructure and the nanomorphology of donor-acceptor (BHJ) blends using techniques such as GISAXS and transmission electron microscopy (TEM) (Task 3.1). • Evaluation of the degradation and
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of donor-acceptor (BHJ) blends using techniques such as GISAXS and transmission electron microscopy (TEM) (Task 3.1). • Evaluation of the degradation and aging of simple OSC devices, correlating the temporal
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, we aim to manipulate the inheritance patterns and create plants capable of biparental or even paternal transmission of plastid and mitochondrial genomes. If the idea of controlling cytoplasmic genetics