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plasmonic nanogap cavities into a scanning probe technique. Plasmonic nanogap cavities are plasmonic nanoparticles placed few nanometers above a metallic surface. They can confine light to atomic dimensions
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We invite applicants for two PhD positions in Luminescence Physics at the Department of Physics (DTU Physics ), Technical University of Denmark . The positions will push forward the emerging field
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nanoparticles and reactions at the atomic-level by combining path-breaking advances in electron microscopy, microfabricated nanoreactors, nanoparticle synthesis and computational modelling. The radical new
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into the diamond bandgap that behave similarly to atomic energy levels. When subject to external perturbations (e.g., pressure, temperature), these levels shift, enabling the G4V center to function as a highly
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We invite applicants for two PhD positions in luminescence physics at the Department of Physics (DTU Physics), Technical University of Denmark. The positions will push forward the emerging field
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Job Description We invite applicants for two PhD positions in luminescence physics at the Department of Physics (DTU Physics), Technical University of Denmark. The positions will push forward
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composition and surface texture to wetting, and (4) investigate how plants can make surfaces with contrasting wetting properties within the same organ. The student will employ diverse techniques such as contact
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workflow for the imaging of Mg-LPSO alloys via X-ray nanotomography followed by higher resolution imaging of the identified regions of interest using transmission electron microscopy and atom probe
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Your Job: At the Electrocatalysis department of Prof. Karl Mayrhofer, we offer a PhD position within the team Nanoanalysis of Electrochemical Processes. Lead by Dr. Andreas Hutzler, the team is
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the project funded by the Swiss National Foundation , we would like to unveil the mechanism of FLA for sintering wide-band gap ceramics, with a particular focus on Li-containing oxides that can be used as